Complete Bibliography

AU=Abbas, A.

Abbas, A., Implications of Theoretical Ideas Regarding Cold Fusion. Cold Fusion, 1996. 15: p. 8.


Category=Theory
KW=theory

AU=Abbenseth, R.

Abbenseth, R. and H. Wipf, Thermal Expansion and Lattice Anharmonicity of Pd-H and Pd-D Alloys. J. Phys. F: Met. Phys., 1980. 10: p. 353.

CA=Wipf, H.
Category=Experiment other
KW=Thermal Expansion KW=Lattice Parameter KW=PdH KW=PdD

AU=ABC, T. V.

ABC, T.V., "Good Morning America". 1994.


Category=News report
KW=history

AU=Abell, G. C.

Abell, G.C. and A. Attalla, NMR Evidence for Solid-Fluid Transition Near 250 K of 3He Bubbles in Palladium Tritide. Phys. Rev. Lett., 1987. 59(9): p. 995.

CA=Attalla, A.
Category=Experiment particle
KW=Pd tritium KW=Helium KW=PdT

AU=Abell, G. C.

Abell, G.C., et al., Helium release from aged palladium tritide. Phys. Rev. B: Mater. Phys., 1990. 41(2): p. 1220.

CA=Matson, L. K., CA=Steinmeyer, R. H., CA=Bowman Jr., R. C., CA=Oliver, B. M.
Category=Experiment other
KW=Helium diffusion KW=PdT

AU=Aben, P. C.

Aben, P.C. and W.G. Burgers, Surface Structure and Electrochemical Potential of Palladium while Absorbing Hydrogen in Aqueous Solution. Trans. Faraday Soc., 1989. 56: p. 1989.

CA=Burgers, W. G.
Category=Experiment other
KW=Pd KW=hydrogen KW=lattice Parameter KW=overvoltage KW=phase Diagram KW=PdH

AU=Aberdam, D.

Aberdam, D., et al., Limits on neutron emission following deuterium absorption into palladium and titanium. Phys. Rev. Lett., 1990. 65(10): p. 1196.

CA=Avenier, M., CA=Bagieu, G., CA=Bouchez, J., CA=Cavaignac, J. F., CA=Collot, J., CA=Durand, R., CA=Faure, R., CA=Favier, J., CA=Kajfasz, E., CA=Koang, D. H., CA=Lefievre, B., CA=Lesquoy, E., CA=Pessard, H., CA=Rouault, A., CA=Senateur, J. P., CA=Stutz, A., CA=Weiss, F.
Category=Experiment particle
KW=neutron KW=method

AU=Abriola, D.

Abriola, D., et al., Examination of nuclear measurement conditions in cold fusion experiments. J. Electroanal. Chem., 1989. 265: p. 355.

CA=Achterberg, E., CA=Davidson, M., CA=Debray, M., CA=Etchegoyen, M. C., CA=Fazzini, N., CA=Niello, J. F., CA=Ferrero, A. M. J., CA=Filevich, A., CA=Galia, M.C., CA=Garavaglia, R., CA=G., Garcia B., CA=Gettar, R. T., CA=Gil, S., CA=Grahmann, H., CA=Huck, H., CA=Jech , A., CA=Kreiner, A. J., CA=Macchiavelli, A. O., CA=Magallanes, J. F., CA=Maqueda, E., CA=Marti, G., CA=Pacheco, A. J., CA=Percz, M. L., CA=Pomar, C., CA=Ramirez, M., CA=Scassera, M.
Category=Experiment particle
KW=gamma emission KW=neutron KW=electrolysis KW=Pd KW=D2O KW=PdCl2

AU=AbuTaha, A. F.

AbuTaha, A.F., Cold fusion - engineering perspectives. J. Fusion Energy, 1990. 9(4): p. 391.


Category=Critique
KW=lattice stress KW=stored energy critique

AU=AbuTaha, A. F.

AbuTaha, A.F., Cold fusion - the heat mechanism. J. Fusion Energy, 1990. 9(3): p. 345.


Category=Critique
KW=critique lattice stress KW=stored energy fractofusion

AU=Abyaneh, M.

Abyaneh, M., et al. Concerning the Modeling of Systems in Terms of Quantum Electrodynamics (QED): The Special Case of "Cold Fusion". in Eleventh International Conference on Condensed Matter Nuclear Science. 2004. Marseille, France.

CA=Fleischmann, M., CA=Del Gindice, E., CA=Vitiello, G.
Category=Theory
KW=theory

AU=Adachi, G.

Adachi, G., H. Sakaguchi, and K. Nagao, (3)He and (4)He from D2 absorbed in LaNi5. J. Alloys and Compounds, 1992. 181: p. 469.

CA=Sakaguchi, H., CA=Nagao, K.
Category=Experiment other
KW=Helium LiNi5 KW=D2

AU=Adamenko, S.

Adamenko, S. and V. Vysotskii. Experimental Observation And A Possible Way To The Creation Of Anomalous Isotopes And Stable Superheavy Nuclei Via The Electron-Nucleus Collapse. in Tenth International Conference on Cold Fusion. 2003. Cambridge, MA: LENR-CANR.org.

CA=Vysotskii, V.
Category=Experiment other
KW=superheavy nuclei

The problem of supercompression of a solid target to a collapse state is considered. The basic principles of construction and the parameters of an experimental setup ensuring such a supercompression are described. The model and method of creation and evolution of superheavy nuclear clusters with 250<A<500 and A>3000-5000 in the controlled collapse zone and in the volume of a remote accumulating screen are discussed. The evolution of such clusters results in the synthesis of isotopes with 1<A<500 and with anomalous spatial distribution in the volume of a remote screen. These phenomena were interpreted on the basis of the idea of the formation of a self-organizing and self-supporting collapse of the electron-nucleus plasma under the action of a coherent driver up to a state close to the nuclear substance.

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AU=Adamenko, S.

Adamenko, S. and V. Vysotskii. The Conditions And Realization Of Self-Similar Coulomb Collapse Of Condensed Target And Low-Energy Laboratory Nucleosynthesis. in Eleventh International Conference on Condensed Matter Nuclear Science. 2004. Marseille, France.

CA=Vysotskii, V.
Category=Theory
KW=theory

AU=Adamenko, S.

Adamenko, S. and V. Vysotskii. Observation And Modeling Of The Ordered Motion Of Hypothetical Magnetically Charged Particles On The Multilayer Surface And The Problem Of Low-Energy Fusion. in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.

CA=Vysotskii, V.
Category=Theory
KW=theory

AU=Adamenko, S.

Adamenko, S. and V. Vysotskii. The possible mechanism of creation of light magnetic monopoles in strong magnetic field of a laboratory system. in ICCF-14 International Conference on Condensed Matter Nuclear Science. 2008. Washington, DC.

CA=Vysotskii, V.
Category=Theory
KW=theory

AU=Adkisson, W. M.

Adkisson, W.M., The Cause of and Happenings During Cold Fusion Events. 1991.


Category=Review
KW=history

AU=Adler, P. N.

Adler, P.N., R.L. Schulte, and H. Margolin, Deuterium surface segregation in titanium alloys. Metal. Trans., 1990. 21A: p. 2003.

CA=Schulte, R. L., CA=Margolin, H.
Category=Experiment other
KW=TiD KW=transmutation KW=D2 KW=Ti

AU=Adzic, R. R.

Adzic, R.R., et al. Tritium Measurements and Deuterium Loading in D2O Electrolysis With a Palladium Cathode. in The First Annual Conference on Cold Fusion. 1990. University of Utah Research Park, Salt Lake City, Utah: National Cold Fusion Institute.

CA=Gervasio, I., CA=Bae, I., CA=Cahan, B., CA=Yeager, E.
Category=Experiment particle
KW=Pd KW=D2O KW=tritium KW=OCV KW=loading KW=ICCF-1

ABSTRACT
 
Measurements have been performed to check on the Fleischmann-Pons (F-P) phenomena. They involved 1) measurements of tritium in the cell solution and the gas above it; and 2) determination of the D/Pd ratio by coulometry. Enhancement of tritium in the D2O solution was found in these two open glass cells, as well as in another four cells with Ni-anodes. The largest enhancement factor found was ~50. The neutron measurements were inconclusive.

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AU=Afanaseyev, V. P.

Afanaseyev, V.P., et al. On the Possibility of D-D Fusion Stimulation by High-Current Arc Discharge in Gas-Filled Metal. in International Symposium on Cold Fusion and Advanced Energy Sources. 1994. Belarusian State University, Minsk, Belarus: Fusion Information Center, Salt Lake City.

CA=Dyuzhev, G. A., CA=Logatchev, A. A., CA=Tsirkel', B. I., CA=Shkolnik, S. M., CA=Kazarinov, N., CA=Solin, L. M.
Category=Experiment particle
KW=Ti KW=Pd KW=D2 KW=gas discharge KW=neutron

AU=Affatato, S.

Affatato, S., et al. Measurement of a Very Low Neutron Background Within a Significant Gamma-Ray Environment by Means of a Coincidence Spectrometer with n-g Pulse-Shape Discrimination. in Anomalous Nuclear Effects in Deuterium/Solid Systems, "AIP Conference Proceedings 228". 1990. Brigham Young Univ., Provo, UT: American Institute of Physics, New York.

CA=Bertin, A., CA=Bruschi, M., CA=Bulgarelli, D., CA=Bystritsky, V. M., CA=Capponi, M., CA=D'Antone, I., CA=DeCastro, S., CA=Galli, D., CA=Marconi, U., CA=Massa, I., CA=Morganti, M., CA=Moroni, C., CA=Piccinini, M., CA=Poli, M., CA=Semprini-Cesari, N., CA=Villa, M., CA=Vitale, A., CA=Zavattini, G., CA=Zoccoli, A.
Category=Experiment particle
KW=neutron KW=gamma emission KW=method

AU=Afonichev, D.

Afonichev, D. Ascending Diffusion Or Transmutation. in Tenth International Conference on Cold Fusion. 2003. Cambridge, MA: LENR-CANR.org.


Category=Experiment other
KW=transmutation

In any field of investigations new ideas in combination with newly developed equipment can provide advance results. In view of arising interest to cold nuclear fusion (CNF) [1] and searches for consequences of its occurrence the study of the interaction of hydrogen with metals has coincided with the wide spread of the micro-probe X-ray spectrum analysis. This analysis is performed during measurements of alloying element concentration [1] with resolution of about 1x1 µm2.

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AU=Afonichev, D.

Afonichev, D. High-Frequency Radiation And Tritium Channel. in Tenth International Conference on Cold Fusion. 2003. Cambridge, MA: LENR-CANR.org.


Category=Experiment particle
KW=tritium KW=neutron KW=Ti

In the process of deformation at a temperature T=7100 C of titanium alloy samples preliminarily saturated by deuterium a radiation, which is not a neutron flow was detected. Electromagnetic radiation in the range of radio frequencies was detected in titanium alloy samples in the process of their saturation by deuterium. The probable mechanism of its occurrence may be a retardation of charged particles in the metallic matrix.

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AU=Afonichev, D.

Afonichev, D. and M. Murzinova, Indicator of the process of cold fusion. Int. J. Hydrogen Energy, 2003. 28: p. 1005-1010.

CA=Murzinova, M.
Category=Experiment particle
KW=Cold nuclear fusion; Titanium; Deuterium; Tritium; Electromagnetic radiation; Radio frequencies

AU=Agelao, G.

Agelao, G. and M.C. Romano, Heat and helium production during exothermic reactions between gases through palladium geometrical elements loaded with hydrogen. Fusion Technol., 2000. 38: p. 224.

CA=Romano, M. C.
Category=Experiment other
KW=D2 Pd foil KW=film health

AU=Agnello, M.

Agnello, M., et al. Search for Neutron Emission in Titanium-Deuterium Systems. in Anomalous Nuclear Effects in Deuterium/Solid Systems, "AIP Conference Proceedings 228". 1990. Brigham Young Univ., Provo, UT: American Institute of Physics, New York.

CA=Bressani, T., CA=Calvo, D., CA=Feliciello, A., CA=Iazzi, F., CA=Minetti, B., CA=Cherubini, R., CA=Haque, A. M. I., CA=Ricci, R. A.
Category=Experiment particle
KW=neutron KW=Ti KW=D2,

AU=Agnello, M.

Agnello, M., et al. Improvement of the TOFUS Apparatus. in Second Annual Conference on Cold Fusion, "The Science of Cold Fusion". 1991. Como, Italy: Societa Italiana di Fisica, Bologna, Italy.

CA=Iazzi, F., CA=Minetti, B., CA=Botta, E., CA=Bressani, T., CA=Brunasso, O., CA=Calvo, D., CA=Dattola, D., CA=Gianotti, P., CA=Lamberti, C., CA=Zecchina, A.
Category=Experiment particle
KW=apparatus KW=method KW=neutron KW=ICCF-2

AU=Agnello, M.

Agnello, M., et al. Measurement of 2.5 MeV Neutron Emission from Ti/D and Pd/D Systems. in Third International Conference on Cold Fusion, "Frontiers of Cold Fusion". 1992. Nagoya Japan: Universal Academy Press, Inc., Tokyo, Japan.

CA=Botta, E., CA=Bressani, T., CA=Calvo, D., CA=Feliciello, A., CA=Gianotti, P., CA=Iazzi, F., CA=Lamberti, C., CA=Minetti, B., CA=Zecchina, A.
Category=Experiment particle
KW=Ti KW=Pd KW=neutron KW=D2 KW=ICCF-3

AU=Agostino, R. G.

Agostino, R.G., et al. Electronic Fingerprint of D Site Occupation in Pd Deuteride. in 8th International Conference on Cold Fusion. 2000. Lerici (La Spezia), Italy: Italian Physical Society, Bologna, Italy.

CA=Filosa, R., CA=Formoso, V., CA=Liberti, G., CA=De Ninno, A., CA=D'Acapito, F., CA=Colonna, S.
Category=Experiment other
KW=Pd KW=PdD KW=structure KW=ICCF-8

AU=Ahern, B. S.

Ahern, B.S., K.H. Johnson, and J. Clark, H. R., Method of Maximizing Anharmonic Oscillations in Deuterated Alloys. 1995: US Patent #5,411,654.

CA=Johnson, K. H., CA=Clark, J. , H. R.
Category=Miscellaneous

AU=Aiello, S.

Aiello, S., et al., Nuclear fusion experiment in palladium charged by deuterium gas. Fusion Technol., 1990. 18: p. 115.

CA=De Filippo, E., CA=Lanzano, G., CA=Lo Nigro, S., CA=Pagano, A.
Category=Experiment particle
KW=neutron KW=Ti KW=D2 KW=Pd KW=gamma emission KW=particle emission

AU=Akimoto, T.

Akimoto, T., et al. Temperature dependency on counting efficiency of NE213 liquid scintillator for low level neutron measurement. in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.

CA=Mizuno, T., CA=Saito, T., CA=Murai, I., CA=Kumada, T.
Category=Experiment particle
KW=neutron KW=detection KW=method KW=NE213 KW=ICCF-6

AU=Akita, H.

Akita, H., et al. Electrolytic Hydrogen/Deuterium Absorption into Pd, Pd-Rh, and Pd-Ag Alloys in Fuel Cell Type Closed Cell. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui,: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Tsuchida, Y., CA=Nakata, T., CA=Kubota, A., CA=Kobayashi, M., CA=Yamamoto, Y., CA=Hasegawa, N., CA=Hayakawa, N., CA=Kunimatsu, K.
Category=Experiment heat
KW=Pd KW=Pd-Ag KW=Pd-Rh KW=loading KW=Au KW=ICCF-4 KW=electrolysis KW=D2O KW=H2O,

AU=Albagli, D.

Albagli, D., et al., Measurement and analysis of neutron and gamma-ray emission rates, other fusion products, and power in electrochemical cells having Pd cathodes. J. Fusion Energy, 1990. 9: p. 133.

CA=Ballinger, R. G., CA=Cammarata, V., CA=Chen, X., CA=Crooks, R. M., CA=Fiore, C., CA=Gaudreau, M. P. J., CA=Hwang, I., CA=Li, C. K., CA=Linsay, P., CA=Luckhardt, S. C., CA=Parker, R. R., CA=Petrasso, R. D., CA=Schloh, M. O., CA=Wenzel, K. W., CA=Wrighton, M. S
Category=Experiment particle
KW=electrolysis KW=Pd helium neutron- heat- KW=gamma emission KW=D2O KW=MIT

AU=Alber, D.

Alber, D., et al., Search for neutrons from cold nuclear fusion. Z. Phys. A: At. Nucl., 1989. 333: p. 319.

CA=Boebel, O., CA=Schwarz, C., CA=Duwe, H., CA=Hilscher, D., CA=Homeyer, H., CA=Jahnke, U., CA=Spellmeyer, B.
Category=Experiment particle
KW=neutron KW=Jones

AU=Alberg, M. A.

Alberg, M.A., et al., Upper limits to fusion rates of isotopic hydrogen molecules in palladium. Phys. Rev. C: Nucl. Phys., 1990. 41: p. 2544.

CA=Wilets, L., CA=Rehr, J. J., CA=Mustre de Leon, J.
Category=Theory
KW=theory KW=Born-Oppenheimer KW=Pd fusion rate

AU=Alberg, M. A.

Alberg, M.A., et al., Upper limits to fusion rates of isotopic hydrogen molecules in palladium. Phys. Rev. C: Nucl. Phys., 1990. 41: p. 2544.

CA=Wilets, L., CA=Rehr, J. J., CA=Mustre, CA=de Leon, J.
Category=Theory
KW=theory KW=Born-Oppenheimer KW=Pd fusion rate

AU=Albers, P.

Albers, P., et al., Investigations of palladium catalysts on different carbon supports. J. Catal., 1999. 181: p. 145.

CA=Burmeister, R., CA=Seibold, K., CA=Prescher, G., CA=Parker, S. F., CA=Ross, D. K.
Category=Experiment other
KW=catalyst KW=Pd

AU=Aleksan, R.

Aleksan, R., et al., Limits on electrochemically induced fusion of deuterium by neutron flux measurements. Phys. Lett. B, 1990. 234: p. 389.

CA=Avenier, M., CA=Bagieu, G., CA=Bouchez, J., CA=Cavaignac, J. F., CA=Collot, J., CA=Cousinou, M. C., CA=Declais, Y., CA=Dufour, Y., CA=Durand, R., CA=Faure, R., CA=Favier, J., CA=Kajfasz, E., CA=De Kerret, H., CA=Koang, D. H., CA=Lefievre, B., CA=Lesquoy, E., CA=Mallet, J., CA=Nagy, E., CA=Obolensky, M., CA=Pessard, H., CA=Pierre, F., CA=Stutz, A., CA=Wuethrick, J. P.
Category=Experiment particle
KW=electrolysis KW=neutron KW=D2O,

AU=Alekseev, V. A.

Alekseev, V.A., et al., Tritium production in the interaction of dense streams of deuterium plama with metal surfaces. Tech. Phys. Lett., 1995. 21: p. 231.

CA=Vasil'ev, V. I., CA=Romodanov, V. A., CA=Ryshkov, Yu. F., CA=Rylov, S. V., CA=Savin, V. I., CA=Skuratnik , Ya. B., CA=Strunnikov, V. M.
Category=Experiment particle
KW=Ti KW=V KW=Fe KW=Zr KW=Nb KW=tritium KW=gas discharge

AU=Alessandrello, A.

Alessandrello, A., et al., Search for cold fusion induced by electrolysis in palladium. Nuovo Cimento Soc. Ital. Fis. A, 1990. A103: p. 1617.

CA=Bellotti, E., CA=Cattadori, C., CA=Antonione, C., CA=Bianchi, G., CA=Rondinini, S., CA=Torchio, S., CA=Fiorini, E., CA=Guiliani, A., CA=Ragazzi, S., CA=Zanotti, L., CA=Gatti, C.
Category=Experiment particle
KW=gamma emission KW=neutron KW=tritium KW=fractofusion KW=D2 KW=Helium electrolysis KW=heat- KW=negative

AU=Alexander, K. F.

Alexander, K.F., Cold nuclear fusion. Wissensch. Fortschr., 1989. 39: p. 9 (in German).


Category=Review
KW=Review

AU=Alguero, M.

Alguero, M., et al. On the Subsistence of Anomalous Nuclear Effects After Interrupting the Electrolysis in F-P Type Experiments with Deuterated Ti Cathodes. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Fernandez, F., CA=Cuevas, F., CA=Sanchez, C.
Category=Experiment particle
KW=Ti D2O KW=loading neutron ICCF-4 electrolysis

AU=Alguero, M.

Alguero, M., et al. An Experimental Method to Measure the Rate of H(D)-Absorption by a Pd Cathode During the Electrolysis of an Aqueous Solution: Advantages and Disadvantages. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.

CA=Fernandez, J. F., CA=Cuevas, F., CA=Sanchez, C.
Category=Experiment heat
KW=D/Pd KW=method loading KW=Pd KW=electrolysis ICCF-5

AU=Alguero, M.

Alguero, M., et al., An interpretation of some postelectrolysis nuclear effects in deuterated titanium. Fusion Technol., 1996. 29: p. 390.

CA=Fernandez, J. F., CA=Cuevas, F., CA=Sanchez, C.
Category=Experiment particle
KW=electrolysis KW=neutron KW=Ti KW=D2O fractofusion

AU=Allard, K.

Allard, K., et al., Application of the Electron-Donation Model for Hydrogen Absorption to Palladium-Rich Alloys. Hydrogen-Gold-Palladium. J. Phys. Chem., 1968. 72: p. 136.

CA=Maeland, A., CA=Simons, J. W., CA=Flanagan, T. B.
Category=Experiment other
KW=H KW=electron Structure Au-Pd Phase Diagram KW=loading

AU=Altaiskii, M. V.

Altaiskii, M.V., et al., Fluctuational enhancement of quantum mechanical and wave barrier penetrability and some physical consequences. Vopr. At. Nauki Tekh. Ser.: Fiz. Radiats. Povr. Radiats. Materialoved., 1990. 52(1): p. 78 (in Russian).

CA=Artekha, S. N., CA=Barts, B. I., CA=Bar'yakhtar, V. G., CA=Moiseev, S. S.
Category=Theory
KW=Theory fluctuations vibration distance

AU=Amato, I.

Amato, I., Cold Fusion Keeps Its Head Just Above Water. Science News, 1989. 13: p. 278.


Category=Review
KW=history

AU=Amato, I.

Amato, I., Cold Fusion Saga: Trials and Tribulations. Science News, 1990. 137(24): p. 374.


Category=Review
KW=history

AU=Amato, I.

Amato, I., Cold Fusion:Wanted Dead And Alive., in Science News. 1990. p. 14.


Category=News report
KW=review KW=newspaper

AU=Amato, I.

Amato, I., If Not Cold Fusion, Try Fracto-Fusion? Science News, 1990. 137: p. 87.


Category=Review
KW=history KW=fractofusion

AU=Amato, I.

Amato, I., Cluster Fusion: Close But No Cigar. Science, 1992. 256(5054): p. 178.


Category=Review
KW=history

AU=Amini, F.

Amini, F. Production Method for Violent TCB Jet Plasma from Cavity. in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.


Category=Experiment heat
KW=cavitation KW=ultrasonic KW=heat

1. Introduction
 One of our hydropower plants (Masjed - E - Soleyman, Iran) has four Francis turbines. Two units on the right side (looking downstream) share a common penstock and a common long tailrace tunnel, and the other two units on the left also share a penstock and tailrace tunnel.
Upon commissioning of one unit, the hydraulic transient in the draft tube during load rejection above 75% was excessive. It was apparent that the guide vane closing law that had been adopted would result in water column separation during load rejection at full power. Tests with a slower closing rate showed that the risk of column separation was reduced, but a violent surge developed in the draft tube close to maximum over speed.
The energy level and cavity volume that are produced are much more than those of regular TCB (Transient Cavitation Bubbles) experiments, and therefore, we should expect more intense effects than a regular TCB jet produces.

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AU=An, H. K.

An, H.K., et al., Analysis of deformed palladium cathodes resulting from heavy water electrolysis. Fusion Technol., 1995. 27: p. 408.

CA=Jeong, E. I., CA=Hong, J. H., CA=Lee, Y.
Category=Experiment heat
KW=Pd Ti Au surface layer heat electrolysis D2O,

AU=An, X. W.

An, X.W., et al., Calorimetric investigation of electrochemically induced nuclear fusion of deuterium. Thermochim. Acta, 1991. 183: p. 107.

CA=Yan, H. K., CA=Han, B. X., CA=Guo, D. J., CA=Xie, D. Y., CA=Zhu, Q. H., CA=Hu, R. H.
Category=Experiment heat
KW=electrolysis Pd KW=heat KW=D2O KW=H2

AU=Andermann, G.

Andermann, G. A Theoretical Model (Nu-Q) for Rationalizing Electrochemically Induced Nuclear Events Observed in Deuterium Loaded Pd Cathodes. in The First Annual Conference on Cold Fusion. 1990. University of Utah Research Park, Salt Lake City, Utah: National Cold Fusion Institute.


Category=Theory
KW=theory dineutron ICCF-1

AU=Andermann, G.

Andermann, G. Theoretical Model for Low Temperature Nuclear Events. in Cold Fusion Symp., 8th World Hydrogen Energy Conf.,. 1990. Honolulu, HI: Hawaii Natural Energy Institute, 2540 Dole St., Holmes Hall 246, Honolulu, HI 96822.


Category=Theory
KW=theory,

AU=Anderson, D. M.

Anderson, D.M. and J. Bockris, Cold Fusion at Texas A&M. Science, 1990. 249: p. 463.

CA=Bockris, J.
Category=Review
KW=history

AU=Anderson, G. C.

Anderson, G.C., Clandestine NSF Panel Warms to Cold Fusion. The Scientist, 1989.


Category=Review
KW=history

AU=Anderson, I. S.

Anderson, I.S., D.K. Ross, and C.J. Carlile, The Structure of the g Phase of Palladium Deuteride. Phys. Lett. A, 1978. 68: p. 249.

CA=Ross, D. K., CA=Carlile, C. J.
Category=Experiment particle
KW=structure KW=PdD KW=lattice Parameter KW=gamma phase

AU=Anderson, J.

Anderson, J., et al., Letters and Response about Cold Fusion at Texas A&M. Science, 1990. 249: p. 463-465.

CA=Bockris, J., CA=Worledge, D. H., CA=Taubes, G.
Category=Review
KW=history

AU=Anderson, R. E.

Anderson, R.E. and S.E. Jones. Comments on an Experiment at Yale on Cold Fusion. in Anomalous Nuclear Effects in Deuterium/Solid Systems, "AIP Conference Proceedings 228". 1990. Brigham Young Univ., Provo, UT: American Institute of Physics, New York.

CA=Jones, S. E.
Category=Critique
KW=neutron KW=error KW=critique

AU=Anderson, R. E.

Anderson, R.E., et al. Neutron Measurements in Search of Cold Fusion. in Anomalous Nuclear Effects in Deuterium/Solid Systems, "AIP Conference Proceedings 228". 1990. Brigham Young Univ., Provo, UT: American Institute of Physics, New York.

CA=Goulding, C. A., CA=Johnson, M. W., CA=Butterfield, K. B., CA=Gottesfeld, S., CA=Baker, D. A., CA=Springer, T. E., CA=Garzon, F. H., CA=Bolton, R. D., CA=Leonard, E. M., CA=Chancellor, T.
Category=Experiment particle
KW=Pd KW=Ti KW=D2 KW=D2O KW=neutron

AU=Andreani, R.

Andreani, R., La fusione 'fredda'" ("'Cold' fusion"). Energ. Nucl. (Rome), 1989. 6: p. 8 (in Italian).


Category=Review
KW=history

AU=Andresen, B. D.

Andresen, B.D., et al., Potentially explosive organic reaction mechanisms in Pd/D2O electrochemical cells. Chem. Health Safety, 1994. 1: p. 44.

CA=Whipple, R., CA=Alcazar, A., CA=Haas, J. S., CA=Grant, P. M.
Category=Review
KW=explosion KW=SRI KW=accident

AU=Anghaie, S.

Anghaie, S., P. Froelich, and H.J. Monkhurst, On fusion/fission chain reactions in the Fleischmann-Pons 'cold fusion' experiment. Fusion Technol., 1990. 17: p. 500.

CA=Froelich, P., CA=Monkhurst, H. J.
Category=Theory
KW=theory KW=fission KW=KW=fusion Li chain reaction

AU=Antanasijevic, R. D.

Antanasijevic, R.D., et al., Preliminary observations on possible implications of new Bohr orbits (resulting from electromagnetic spin-spin and spin-orbit coupling) in 'cold' quantum mechanical fusion processes appearing in strong 'plasma focus' and 'capillary fusion' experiments. Phys. Lett. A, 1993. 180: p. 25.

CA=Lakicevic, I., CA=Maric, Z., CA=Zevic, D., CA=Zaric, A., CA=Vigier, J. P.
Category=Theory
KW=Theory spin-spin KW=neutron KW=Pd KW=gas discharge electron mass

AU=Antanasijevic, R. D.

Antanasijevic, R.D., et al. "Cold Fusion" in Terms of New Quantum Chemistry: The Role of Magnetic Interactions in Dense Physica Media. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.

CA=Konjevic, D. J., CA=Maric, Z., CA=Sevic, D. M., CA=Vigier, J. P., CA=Zaric, A. J.
Category=Experiment particle
KW=neutron KW=X-ray KW=plasma KW=gas discharge KW=ICCF-5

AU=Antonov, A. V.

Antonov, A.V., et al., An attempt to observe cold thermonuclear fusion during the electrolysis of heavy water. Sov. Phys. Lebedev Inst. Rep., 1990(5): p. 52.

CA=Benetskii, B. A., CA=Ginodman, V. B., CA=Zherikhina, L. N., CA=Klyachko, A. V., CA=Konobeevskii, E. S., CA=Mordovskoi, M. V., CA=Popov, V. I., CA=Rozantsev, A. I., CA=Tskhovrebov, A. M.
Category=Experiment particle
KW=neutron KW=electrolysis KW=Pd KW=D2

AU=Antonov, V. E.

Antonov, V.E., et al., Phasometric T-P Diagram of the Rh-H System up to 400 C and Pressure of 67 kbar. Doky. Akad. Sci. SSSR, 1979. 248: p. 131.

CA=Belash, I. T., CA=Koltighin, V. M., CA=Poniatovskii, E. G.
Category=Miscellaneous
KW=Rh KW=H KW=phase Diagram

AU=Antonov, V. E.

Antonov, V.E., et al., The Solubility of Hydrogen in the Platinum Metals under High Pressure. Platinum Met. Rev., 1984. 28: p. 158.

CA=Belash, I. T., CA=Malyshev, V. Yu., CA=Ponyatovsky, E. G.
Category=Experiment other
KW=Mn KW=Fe KW=Co KW=Mo KW=Tc KW=Re KW=Au KW=Ru KW=Os KW=Ir KW=Pt KW=Pd KW=H KW=solubility KW=phase Diagram KW=structure KW=resistance KW=pressure

AU=Antonov, V. E.

Antonov, V.E., et al., The Pd-Pt-H System: Phase Transformations at High Pressure and Superconductivity. Phys. Stat. Sol. A, 1993. 78: p. 137.

CA=Antonova, T. E., CA=Belash, I. T., CA=Ponyatoskii, E. G., CA=Rashupkin, V. I.
Category=Experiment other
KW=Pd KW=Pt KW=H KW=phase diagram KW=superconductivity KW=resistivity KW=lattice parameter

AU=Anufriev, G. S.

Anufriev, G.S. and B.S. Boltenkov, Helium isotopes and hydrogen in aluminium and other metals. Vopr. At. Nauki Tekh. Ser.: Fiz. Radiats. Povr. Radiats. Materialoved., 1991. 56(2): p. 73 (in Russian).

CA=Boltenkov, B. S.
Category=Experiment particle
KW=3He/4He KW=helium KW=tritium Al KW=Ag KW=Ni KW=electrolysis

AU=Aoki, T.

Aoki, T., Y. Kurata, and H. Ebihara. Study of Concentrations of Helium and Tritium in Electrolytic Cells with Excess Heat Generations. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Kurata, Y., CA=Ebihara, H.
Category=Experiment particle
KW=heat+ KW=tritium KW=helium KW=Pd KW=D2O KW=current density KW=gamma emission KW=neutron KW=ICCF-4 KW=electrolysis KW=negative

ABSTRACT
 Concentrations of helium and tritium in gas and liquid phases in calorimetric cells with excess heat generations were measured. Values of factor F (nuclear ash) defined as ratio of amount of heat released by particular nuclear reactions to the excess heat, were calculated to be F(He in gas phase) ≈ (4±16)×10-3 and F(T in liquid phase) ≈ (8±6)×10-10, and upper limit of F(T in gas phase) ≤ 1×10-6. These extremely small values suggested either that (1) the nuclear reactions might occur in deep inside of the Pd cathode, or (2) the major amount of the detected excess heat could not match with the heat expected from the nuclear reactions if the reactions occurred on the surface of Pd cathodes.

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AU=Aoki, T.

Aoki, T., et al. Search for neutrons emitted from sodium tungsten bronzes. in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.

CA=Kurata, Y., CA=Ebihara, H., CA=Yoshikawa, N.
Category=Experiment particle
KW=neutron KW=W-bronze KW=NaWO3 KW=ICCF-6

AU=Aoki, T.

Aoki, T., et al., Search for nuclear products of the D + D nuclear fusion. Int. J. Soc. Mat. Eng. Resources, 1998. 6(1): p. 22.

CA=Kurata, Y., CA=Ebihara, H., CA=Yoshikawa, N.
Category=Experiment particle
KW=Pd KW=tungsten bronze KW=electrolysis KW=D2 KW=heat KW=neutron KW=gamma emission KW=tritium KW=helium KW=NaWO3 KW=negative

Nuclear products which were caused by the D + D nuclear fusion reaction were searched in electrolytic cells and in gas phase of Pd + D systems. Measurements of nuclear products were made for gamma-ray, neutron, tritium and helium. To detect neutron, liquid scintillation and 3He counters were used. For gamma-ray measurement, a NaI detector was used. For tritium concentration measurement in gas phase, a gas proportional chamber was fabricated and operated in low background level. The signals of those detectors were fed to Pulse Height Analyzer and recorded as energy spectra which were carefully compared with background spectra. A different type of neutron hunting was also tried in the instants of pressurizing and depressurizing the deuterium gas in crystal. A large size crystal of tungsten bronze was prepared for the experiment.

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AU=Aoyama, T.

Aoyama, T., et al., Highly reliable low-level neutron detection using 3He proportional counters. Radioisot., 1991. 40: p. 188.

CA=Mori, C., CA=Uritani, A., CA=Matsui, T., CA=Naito, K.
Category=Experiment particle
KW=neutron KW=electrolysis KW=method

AU=Apak, R.

Apak, R., Conformism in chemistry and the results. Kim. Sanayi, 1989. 31: p. 157-8 (in Turkish, Engl. abstr.).


Category=Review
KW=history

AU=Apicella, M.

Apicella, M., et al. Some recent results at ENEA. in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.

CA=Castagna, E., CA=Capobianco, L, CA=D'Aulerio, L., CA=Mazzitelli, G., CA=Sarto, F., CA=Rosada, A., CA=Santoro, E., CA=Violante, V., CA=McKubre, M. C. H., CA=Tanzella, F., CA=Sibilia, C
Category=Experiment heat
KW=Excess heat

Recent research activity at ENEA, in the field of Condensed Matter Nuclear Science, has been oriented to material science and Laser triggering in order to increase the reproducibility of excess of power production during loading of palladium with deuterium. Isoperibolic calorimetry in gas phase, isoperibolic and flow calorimetry with electrochemical systems have been carried out. Nuclear ashes detection was done by means of high resolution and high sensitivity mass spectrometer. Material science studies allowed to obtain a palladium showing high solubility for hydrogen isotopes and giving deuterium concentration at equilibrium larger than 0.95 (as D/Pd atomic fraction) with a reproducibility larger than 90%. Excess of power production by using the above-mentioned material achieves a reproducibility up to 30% without triggering. Laser irradiation with a proper polarization seems to have a significant role in further increasing of the excess of power production reproducibility. Heat bursts exhibit an integrated energy at least 10 times greater than the sum of all possible chemical reactions within a closed cell. The energy gain calculated at the end of the experiments is observed with deuterium but not with hydrogen. Preliminary measurements give a 4He signal in reasonable agreement with the expected values by assuming a D + D = 4He + heat (24 MeV for event) reaction.

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AU=Apostol, M.

Apostol, M. and I.A. Dorobantu, On a competition between solid state and nuclear scale energies. A possible theoretical approach to cold fusion in palladium and other transitional elements. Rev. Roum. Phys., 1989. 34: p. 233.

CA=Dorobantu, I. A.
Category=Theory
KW=Theory

AU=Appleby, A. J.

Appleby, A.J., et al. Evidence for Excess Heat Generation Rates During Electrolysis of D2O in LiOD Using a Palladium Cathode-A Microcalorimetric Study. in Workshop on Cold Fusion Phenomena. 1989. Santa Fe, NM.

CA=Srinivasan, S., CA=Kim, Y. J., CA=Murphy, O. J., CA=Martin, C. R.
Category=Experiment heat
KW=heat+ KW=Pd KW=D2O KW=electrolysis

AU=Appleby, A. J.

Appleby, A.J., et al. Anomalous Calorimetric Results During Long-Term Evolution of Deuterium on Palladium from Alkaline Deuteroxide Electrolyte. in The First Annual Conference on Cold Fusion. 1990. University of Utah Research Park, Salt Lake City, Utah: National Cold Fusion Institute.

CA=Kim, Y. J., CA=Murphy, O. J., CA=Srinivasan, S.
Category=Experiment heat
KW=heat+ KW=Pd KW=D2O KW=electrolysis surface effect H2O Li6 Na current density helium ICCF-1

ABSTRACT
 Convincing evidence of anomalous thermal fluxes from palladium cathodes in LiOD solutions is provided. When combined with other evidence for tritium formation, these argue for the existence of solid state nuclear processes in this system. Compared with previous work, effects are only seen at a relatively low level, and they appear to decrease with decreasing electrode surface/volume ratio. They are also observed in a sealed cell with internal gas recombination, which requires no thermodynamic corrections. The effect of lithium ion is seen to be specific, and the effect seems to involve only the palladium surface layers.

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AU=Arapi, A.

Arapi, A., et al. Experimental observation of the new elements production in the deuterated and/or hydride palladium electrodes, exposed to low energy DC glow discharge. in The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science. 2002. Tsinghua Univ., Beijing, China: Tsinghua Univ. Press.

CA=Ito, R., CA=Sato, N., CA=Itagaki, M., CA=Narita, S., CA=Yamada, H.
Category=Experiment other
KW=glow diacharge KW=D2 KW=H2 KW=transmutation KW=Ba KW=Ni KW=Li KW=Be KW=ICCF-9

Elemental and isotopic structures of the palladium cathode before and after experiment under DC glow discharge were investigated by time of flight secondary ion mass spectrometry (TOF-SIMS). Production of new elements with various atomic masses and impurities increase were surveyed. By analyzing obtained results, it was found that beryllium and nickel for deuterium-palladium system, and lithium, nickel and barium for hydrogen-palladium system, were generated during glow discharge experiments.

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AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Achievement of intense 'cold fusion' reaction. Kaku Yugo Kenkyu, 1989. 62: p. 398 (In Japanese).

CA=Zhang, Y. C.
Category=Experiment particle
KW=on-off effect KW=electrolysis KW=Pd KW=neutron KW=heat,

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Achievement of an intense cold fusion reaction. Fusion Technol., 1990. 18: p. 95.

CA=Zhang, Y. C.
Category=Theory
KW=theory KW=method KW=Pd KW=electrolysis KW=neutron KW=hardness heat+,

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Achievement of intense 'cold' fusion reaction. Proc. Jpn. Acad., Ser. B, 1990. 66: p. 1.

CA=Zhang, Y. C.
Category=Experiment particle
KW=Pd KW=electrolysis KW=pressure KW=heat+ KW=neutron+ KW=D2O KW=fractofusion

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Corroborating evidence for 'cold' fusion reaction. Proc. Jpn. Acad., Ser. B, 1990. 66(B): p. 110.

CA=Zhang, Y. C.
Category=Experiment particle
KW=on-off effect KW=electrolysis KW=Pd KW=neutron KW=Pd-Ni KW=layer

AU=Arata, Y.

Arata, Y. and Y.C. Zhang. "Cold" Fusion in a Complex Cathode. in Third International Conference on Cold Fusion, "Frontiers of Cold Fusion". 1992. Nagoya Japan: Universal Academy Press, Inc., Tokyo, Japan.

CA=Zhang, Y. C.
Category=Experiment particle
KW=Pd KW=Ni KW=D2 KW=layer KW=neutron KW=electrolysis KW=D2O KW=H2O ICCF-3

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, 'Cold' fusion caused by a weak 'on-off effect'. Proc. Jpn. Acad., Ser. B, 1992. 66: p. 33.

CA=Zhang, Y. C.
Category=Theory
KW=on-off effect KW=electrolysis KW=Pd KW=neutron KW=theory

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, 'Cold' fusion in deuterated complex cathode. Kaku Yugo Kenkyu, 1992. 67((5)): p. 432 (in Japanese).

CA=Zhang, Y. C.
Category=Experiment particle
KW=Ni KW=Pd KW=electrolysis KW=heat KW=layer KW=D2O KW=neutron H2

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Reproducible "Cold" Fusion Reaction Using A Complex Cathode. Fusion Technol., 1992. 22: p. 287.

CA=Zhang, Y. C.
Category=Experiment particle
KW=Pd KW=D2O KW=neutron KW=energy

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Excess heat in a double structure deuterated cathode. Kaku Yygo Kenkyu, 1993. 69((8)): p. 963 (in Japanese).

CA=Zhang, Y. C.
Category=Experiment heat
KW=complex cathode KW=Pd KW=electrolysis KW=heat+ KW=pressure KW=Pd-black

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, A new energy caused by "Spillover-deuterium". Proc. Jpn. Acad., Ser. B, 1994. 70 ser. B: p. 106.

CA=Zhang, Y. C.
Category=Experiment heat
KW=Pd-black KW=D2 surface analysis KW=heat+ KW=structure

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, A new energy generated in DS-cathode with 'Pd-black'. Koon Gakkaishi, 1994. 20(4): p. 148 (in Japanese).

CA=Zhang, Y. C.
Category=Experiment particle
KW=Pd-black heat+ particle

Abstract: It was verified that a new kind of energy is caused by “Spillover-Deuterium” generated in a double structure (DS)-cathode with “Pd-black”. Using this cathode, the authors confirmed the sustained production of a significantly abnormal amount of energy over a period of several months that could not be ascribed to chemical reaction energy. The chemical reaction energy of 0.1 [mol] Pd-black used is only 4[kJ], but more than 200[MJ] of excess energy was continuously produced for over 3000 [hr] at an average rate of 50-100 [kJ/hr] using a DS-cathode with a same quantity of Pd-black. Intermittent operation over a period of two years using this structure proved the complete reproducibility of these results.

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AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Achievement of solid-state plasma fusion ("cold fusion"). Koon Gakkaishi, 1995. 21((6)): p. 303 (in Japanese).

CA=Zhang, Y. C.
Category=Experiment heat
KW=Pd D2O KW=Helium KW=heat+ KW=Pd-black

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Cold fusion caused by 'lattice quake'. Koon Gakkaishi, 1995. 21: p. 43 (in Japanese).

CA=Zhang, Y. C.
Category=Theory
KW=theory Pd-black D2O electrolysis KW=heat+

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Cold fusion reactions driven by 'Latticequake'. Proc. Jpn. Acad., Ser. B, 1995. 71: p. 98.

CA=Zhang, Y. C.
Category=Theory
KW=theory

AU=Arata, Y.

Arata, Y. and Y.C. Zhang. Excess Heat and Mechanism in Cold Fusion Reaction. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.

CA=Zhang, Y. C.
Category=Theory
KW=theory heat+ ICCF-5 particle lattice quake

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Peculiar relation between hot plasma fusion and solid-state plasma fusion ("cold fusion"). Koon Gakkaishi, 1995. 21: p. 130 (in Japanese).

CA=Zhang, Y. C.
Category=Theory
KW=theory KW=heat+ KW=Pd-black KW=D2O electrolysis

AU=Arata, Y.

Arata, Y. and Y.C. Zhang. Achievement of Solid-State Plasma Fusion ("Cold Fusion"). in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.

CA=Zhang, Y. C.
Category=Experiment particle
KW=Pd-black KW=D2 KW=heat+ KW=helium ICCF-6 particle

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Deuterium nuclear reaction process within solid. Proc. Jpn. Acad., Ser. B, 1996. 72 Ser. B: p. 179.

CA=Zhang, Y. C.
Category=Theory
KW=Theory KW=helium

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Generation and mechanism of solid-state plasma fusion ("cold fusion"). Koon Gakkaishi, 1996. 22(1): p. 29 (Japanese).

CA=Zhang, Y. C.
Category=Theory
KW=theory

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Helium (4He, 3He) within deuterated Pd-black. Proc. Jpn. Acad., Ser. B, 1997. 73: p. 1.

CA=Zhang, Y. C.
Category=Experiment heat
KW=helium heat+ KW=Pd-black

AU=Arata, Y.

Arata, Y. and C. Zhang, Presence of helium (4/2He, 3/2He) confirmed in deuterated Pd-black by the "vi-effect" in a "closed QMS" environment. Proc. Jpn. Acad., Ser. B, 1997. 73: p. 62.

CA=Zhang, C.
Category=Experiment heat
KW=electrolysis KW=Helium D2O KW=H2

AU=Arata, Y.

Arata, Y. and C. Zhang, Presence of helium (4/2He, 3/2He) confirmed in highly deuterated Pd-black by the new detecting methodology. J. High Temp. Soc., 1997. 23: p. 110 (in Japanese).

CA=Zhang, C.
Category=Experiment other
KW=Helium method KW=D2

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Solid-state plasma fusion ('cold fusion'). J. High Temp. Soc., 1997. 23 (special volume): p. 1-56.

CA=Zhang, Y. C.
Category=Theory
KW=theory KW=helium heat+ KW=KW=lattice quake KW=D2O KW=Pd-black KW=4He

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Anomalous 'deuterium-reaction energies' within solid. Proc. Jpn. Acad., Ser. B, 1998. 74 B: p. 155.

CA=Zhang, Y. C.
Category=Experiment heat
KW=electrolysis Pd KW=Pd-black KW=heat+ KW=D2O KW=H2

This paper can be downloaded at the web site of the Japanese Journal of Applied Physics, http://www.ipap.jp/jjap/index.htm. Until January 2004, anyone could register and download papers there at no cost. The journal is now charging for reprints. We hope to make reprints of this and other cold fusion related papers available here. The title, abstract and keywords for this paper are available at in this library. The abstract begins:
 Both D2O-cell and H2O-cell are constructed with the same Double Structure Cathode (DS-cathode), and connected in series as a “Double-cell” to examine the energy generation under the same electrolytic current. D2O-cell generates tremendously excess energy during a long. Such as over several thousand hours, but any energy is never generated in H2O-cell when the chemical energy is subtracted in both cells. . . .

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AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Anomalous difference between reaction energies generated within D2O-cell and H2O-cell. Jpn. J. Appl. Phys. Part 2, 1998. 37: p. L1274.

CA=Zhang, Y. C.
Category=Experiment heat
KW=electrolysis KW=heat+ D2O KW=H2

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Anomalous production of gaseous 4He at the inside of 'DS cathode' during D2O-electrolysis. Proc. Jpn. Acad., Ser. B, 1999. 75: p. 281.

CA=Zhang, Y. C.
Category=Experiment heat
KW=electrolysis KW=helium Pd-black KW=D2

Abstract: Observations were made of the abundant production of gaseous 4He inside a double-struc­ture Pd cathode (“DS-cathode”) which continuously had released excess heat of about 5~ 10 W over 2,000 hrs in the electrolysis of D2O. These 4He atoms were found from the inner atmosphere within the DS-cath­ode included the highly deuterated Pd fine powders.

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AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Critical condition to induce 'excess energy' within [DS-H2O] cell. Proc. Jpn. Acad., Ser. B, 1999. 75 Ser. B: p. 76.

CA=Zhang, Y. C.
Category=Experiment heat
KW=electrolysis KW=heat+ KW=Helium D2

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Definitive difference between [DS-D2O] and [Bulk-D2O] cells in 'deuterium-reaction'. Proc. Jpn. Acad., Ser. B, 1999. 75 Ser. B: p. 71.

CA=Zhang, Y. C.
Category=Experiment heat
KW=electrolysis KW=heat+ KW=Helium KW=D2

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Observation of Anomalous Heat Release and Helium-4 Production from Highly Deuterated Fine Particles. Jpn. J. Appl. Phys. Part 2, 1999. 38: p. L774.

CA=Zhang, Y. C.
Category=Experiment heat
KW=electrolysis KW=heat+ D2O KW=H2

This paper can be downloaded at the web site of the Japanese Journal of Applied Physics, http://www.ipap.jp/jjap/index.htm. Until January 2004, anyone could register and download papers there at no cost. The journal is now charging for reprints. We hope to make reprints of this and other cold fusion related papers available here. The title, abstract and keywords for this paper are available at in this library. The abstract begins:
 Observations were made of the anomalous production of 4He atoms as well as the anomalous heat release when Pd fine particles are highly deuterated inside an enclosed Pd metal vessel used as a cathode in electrolysis of D2O. A mass analysis of the remnant Pd powders after the 2000-hr heat production revealed substantial production of 4He atoms.

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AU=Arata, Y.

Arata, Y. and Y.C. Zhang. Definite Difference amoung [DS-D2O], [DS-H2O] and [Bulk-D2O] Cells in the Deuterization and Deuterium-reaction. in 8th International Conference on Cold Fusion. 2000. Lerici (La Spezia), Italy: Italian Physical Society, Bologna, Italy.

CA=Zhang, Y. C.
Category=Experiment particle
KW=heat+ Pd-black D2 KW=H2 KW=Helium ICCF-8 particle

AU=Arata, Y.

Arata, Y., Developmental challenge in new energy source. 'Solid state plasma fusion'". Kotai Butsuri, 2000. 35(1): p. 67 [in Japanese].


Category=Review
KW=Review

AU=Arata, Y.

Arata, Y. and Y.C. Zhang. Sono Implantation of Hydrogen and Deuterium from Water into Metallic Fine Powders. in 8th International Conference on Cold Fusion. 2000. Lerici (La Spezia), Italy: Italian Physical Society, Bologna, Italy.

CA=Zhang, Y. C.
Category=Experiment other
KW=cavitation KW=powder KW=Ti KW=Fe KW=Pd KW=Ag KW=Ta KW=Pt KW=Au KW=loading KW=method. ICCF-8

AU=Arata, Y.

Arata, Y. and Y.C. Zhang, Formation of Condensed Metallic Deuterium Lattice and Nuclear Fusion. Proc. Jpn. Acad., Ser. B, 2002. 78(Ser. B): p. 57.

CA=Zhang, Y. C.
Category=Experiment particle
KW=PdD D2 Pd structure particle composition ZrO2

Abstract: It was confirmed that nanometer-sized metal powder (atom clusters or simply clusters) can absorb an extremely large amount of deuterium/hydrogen atoms more than 300% against the number density of host metal. Within such clusters, the bonding potential widely changes from the center region to peripheral ones, so that the zig-zag atom-chains are always formed dynamically around the average position of atoms and the degree of filling up of the constituent atoms for the fcc type metal reduces to about 0.64 from 0.74 in bulk metal, i.e., vacant space increases to 0.36 from 0.26. As a result, a large amount of deuterium/hydrogen atoms are instantly dissolved into such host-clusters at room temperature. . . .

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AU=Arata, Y.

Arata, Y. and Y.C. Zhang. Picnonuclear fusion generated in "lattice-reactor" of metallic deuterium lattice within metal atom-clusters. in The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science. 2002. Tsinghua Univ., Beijing, China: Tsinghua Univ. Press.

CA=Zhang, Y. C.
Category=Experiment particle
KW=gas loading KW=sonofusion KW=heat KW=D2 KW=He KW=nanoparticle KW=loading KW=ICCF-9

AU=Arata, Y.

Arata, Y. and Y. Zhang. Development of Compact Nuclear Fusion Reactor Using Solid Pycnodeuterium as Nuclear Fuel. in Tenth International Conference on Cold Fusion. 2003. Cambridge, MA: LENR-CANR.org.

CA=Zhang, Y.
Category=Miscellaneous
KW=Palladium Black KW=pressure

Abstract
Based on the functioning of Pd black inside a DS-Cathode, which has produced irrefutable evidence for the existence of solid nuclear fusion, new materials were developed to absorb abundant D/H atoms, up to levels as high as 300% of Pd number. These absorbed atoms were solidified densely inside each unit cell of the host lattice as solid-state “Pycnodeuterium” or “Pycnohydrogen.” Stimulation energy with Pycnodeuterium easily caused intense solid-state nuclear fusion, whereas with Pycnohydrogen no reaction occurred. As the result, it was clarified that Pycnodeuterium is by far the best nuclear fuel compared to all other nuclear fuels.

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AU=Arata, Y.

Arata, Y. Development of "DS-Reactor" as the practical reactor of "Cold Fusion" based on the "DS-Cell" with "DS-Cathode". in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.


Category=Experiment heat
KW=heat

Lecture slides describing a gas-loaded version of Arata’s double-structured cathode.

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AU=Arata, Y.

Arata, Y. and Y. Zhang, The Establishment of Solid Nuclear Fusion Reactor. J. High Temp. Soc., 2008. 34(2): p. 85.

CA=Zhang, Y.
Category=Experiment heat
KW=Excess heat

AU=Arista, N. R.

Arista, N.R., A. Gras-Marti, and R.A. Baragiola, Screening effects in nuclear fusion of hydrogen isotopes in dense media. Phys. Rev. A: At. Mol. Opt. Phys., 1989. 40: p. 6873.

CA=Gras-Marti, A., CA=Baragiola, R. A.
Category=Theory
KW=Theory screening

AU=Armacanqui, M. E.

Armacanqui, M.E. and R.A. Oriani, Anomalies Accompanying the Cathodic Charging of Some bcc Metals. Corrosion, 1985. 41: p. 287.

CA=Oriani, R. A.
Category=Experiment other
KW=H2 KW=lattice Parameter KW=loading KW=Ti

AU=Armacanqui, M. E.

Armacanqui, M.E. and R.A. Oriani, The Decrease of Lattice Parameter of Thin Films Caused by Cathodic Charging of Hydrogen. Scr. Metall., 1985. 19: p. 525.

CA=Oriani, R. A.
Category=Miscellaneous
KW=lattice Parameter KW=H2 KW=Ti

AU=Armacanqui, M. E.

Armacanqui, M.E. and R.A. Oriani, Lattice Expansion and Contraction in Sputtered Metal Films due to Hydrogen Charging. Mater. Sci. and Eng., 1987. 92: p. 127.

CA=Oriani, R. A.
Category=Miscellaneous
KW=lattice Parameter KW=H2 KW=Ti

AU=Armacanqui, M. E.

Armacanqui, M.E. and R.A. Oriani, Plastic Deformation in B.C.C. Alloys Induced by Hydrogen Concentration Gradients. Mater. Sci. and Eng., 1987. 91: p. 143.

CA=Oriani, R. A.
Category=Experiment other
KW=H KW=dislocation KW=Ti-Mo KW=crack KW=lattice parameter KW=Ti

AU=Armstrong, R. D.

Armstrong, R.D., et al., A long-term calorimetric study of the electrolysis of D2O using palladium cube cathodes. J. Electroanal. Chem., 1989. 272: p. 293.

CA=Charles, E. A., CA=Fells, I., CA=Molyneux, L., CA=Todd, M.
Category=Review
KW=electrolysis Pd KW=heat- KW=review KW=D2

AU=Armstrong, R. D.

Armstrong, R.D., Editorial:The Cold Fusion Debate. Electrochim. Acta, 1989. 34: p. 1287.


Category=Critique
KW=history KW=critique

AU=Armstrong, R. D.

Armstrong, R.D., et al., Some aspects of thermal energy generation during the electrolysis of D2O using a palladium cathode. Electrochim. Acta, 1989. 34: p. 1319.

CA=Charles, E. A., CA=Fells, I., CA=Molyneux, L., CA=Todd, M.
Category=Experiment heat
KW=heat KW=electrolysis KW=Pd D2O method

AU=Arnikar, H. J.

Arnikar, H.J., 'Cold fusion' - a misnomer. Indian J. Chem. Sci., 1990. 4: p. 65.


Category=Theory
KW=Polemic KW=review KW=theory

AU=Arnold, W. R.

Arnold, W.R., et al., Cross Sections for the Reactions D-T, D-He ,T-He, He-He below 120 kev. Phys. Rev., 1954. 93: p. 483.

CA=Phillips, J. A., CA=Sawyer, G. A., CA=Stovall, E. J., CA=Tuck, J. L.
Category=Experiment particle
KW=fusion cross Section tritium D2 KW=Helium KW=branching ratio

AU=Arnoult, W.

Arnoult, W. and R.B. McLellan, The Solubility of Carbon in Rhodium, Ruthenium, Iridium and Rhenium. Scr. Metall., 1972. 6: p. 1013.

CA=McLellan, R. B.
Category=Experiment other
KW=C KW=Rh KW=Ru KW=Ir KW=Rh KW=Pd KW=solubility

AU=Arzhannikov, A. V.

Arzhannikov, A.V. and G.Y. Kezerashvili, First observation of neutron emission from chemical reactions. Phys. Lett., 1991. A156: p. 514.

CA=Kezerashvili, G. Ya
Category=Experiment particle
KW=LiD KW=fractofusion KW=neutron chemical reaction

AU=Asami, N.

Asami, N. and K. Matsui, Research and development for new hydrogen energy. Mater. Adv. Energy Systems & Fission and Fusion Eng., 1994. 7: p. 119.

CA=Matsui, K.
Category=Miscellaneous
KW=NHE

AU=Asami, N.

Asami, N., K. Matsui, and F. Hasegawa. Present Status and the Perspective of New Hydrogen Energy Project. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.

CA=Matsui, K., CA=Hasegawa, F.
Category=Review
KW=review KW=NHE ICCF-5

AU=Asami, N.

Asami, N., et al. Material Behaviour of Highly Deuterium Loaded Palladium by Electrolysis. in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.

CA=Senjuh, T., CA=Kamimura, H., CA=Sumi, M., CA=Kennel, E., CA=Sakai, T., CA=Mori, K., CA=Watanabe, H., CA=Matsui, K.
Category=Experiment heat
KW=loading KW=Pd KW=D2O KW=surface analysis KW=single crystal KW=ICCF-6 KW=electrolysis

Abstract
We have presumed that achieving high reproducibility of the anomalous effect may depend upon reproducible high loading ratios of deuterium in the Palladium. By modification of the working process, heat treatment, surface treatment, and the electrolysis conditions, the deuterium loading up to 0.9~0.96 was achieved with relatively high reproducibility. Detail features of the loading and deloading process were observed by gas chromatographic (GC) analysis and by in-situ optical micrographs during electrolysis. Crystal phase and lattice parameter changes were also measured to find any new phase by the in-situ X-ray diffraction system which was newly developed at the NHE-Lab. The phase transition of α-β during the loading and unloading process was well identified, however no new phase was observed up to a loading ratio of about 0.90.

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AU=Asami, N.

Asami, N., et al., Material characteristics and behavior of highly deuterated loaded palladium by electrolysis. J. Alloys and Compounds, 1997. 253-254: p. 185.

CA=Senjuh, T., CA=Kamimura, H., CA=Sumi, M., CA=Kennel, E., CA=Sakai, T., CA=Mori, K., CA=Watanabe, H., CA=Matsui, K.
Category=Experiment heat
KW=Pd KW=loading KW=PdD KW=electrolysis KW=surface KW=single-crystal KW=D2O KW=electrolysis

AU=Asami, N.

Asami, N., et al. Material Behavior of Highly Deuterated Palladium. in The Seventh International Conference on Cold Fusion. 1998. Vancouver, Canada: ENECO, Inc., Salt Lake City, UT.

CA=Senjuh, T., CA=Uehara, T., CA=Sumi, M., CA=Kamimura, H., CA=Miyashita, S., CA=Matsui, K.
Category=Experiment other
KW=loading KW=PdD KW=anneal KW=phase change KW=ICCF-7

AU=Asami, N.

Asami, N., et al. Material Behavior of Highly Deuterated Palladium. in The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science. 2002. Beijing, China: Tsinghua University: Tsinghua Univ. Press.

CA=Senjuh, T., CA=Uehara, T., CA=Sumi, M., CA=Kamimura, H., CA=Miyashita, S., CA=Matsui, K.
Category=Experiment other
KW=Pd KW=D2 KW=PdD KW=loading KW=composition lattice parameter structure KW=ICCF-9

AU=Asaoka, Y.

Asaoka, Y., et al. Simultaneous Measurement Device of Heat and Neutron of Heavy Water Electrolysis with Palladium Cathode. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.

CA=Ichiji, T., CA=Fujita, T., CA=Matsumura, T.
Category=Experiment particle
KW=Pd KW=D2O KW=heat- KW=electrolysis KW=neutron KW=gamma emission ICCF-5

AU=Aspden, H.

Aspden, H., Refrigeration and electrical power generation. 1993: UK GB 2283361A,.


Category=Experiment other
KW=thermoelectric KW=energy Conversion KW=patent

AU=Assenbaum, H. J.

Assenbaum, H.J., K. Langanke, and C. Rolfs, Effects of Electron Screening on Low-Energy Fusion Cross Sections. Z. Phys. A: At. Nucl., 1987. 327: p. 461.

CA=Langanke, K., CA=Rolfs, C.
Category=Theory
KW=theory screening KW=cross section

AU=Astakhov, I. I.

Astakhov, I.I., et al., An attempt to detect neutron and gamma radiations in heavy water electrolysis with a palladium cathode. Electrochim. Acta, 1991. 36(7): p. 1127.

CA=Davydov, A. D., CA=Katargin, N. V., CA=Kazarinov, V. E., CA=Kiseleva, I. G., CA=Kriksunov, L. B., CA=Kudryavtsev, D. Yu., CA=Lebedev, I. A., CA=Myasoedov, B. F., CA=Shcheglov, O. P., CA=Teplitskaya, G. L., CA=Tsionskii, V. M.
Category=Experiment particle
KW=neutron gamma emission KW=Pd KW=electrolysis KW=Li KW=D2O KW=H2O KW=surface analysis

AU=Astakhov, I. I.

Astakhov, I.I., et al., Diffusion of hydrogen isotopes in palladium hydride and deuteride in the presence of lithium. Russ. J. Electrochem., 1994. 30: p. 1379.

CA=Kazarinov, V. E., CA=Reznikova, L. A., CA=Teplitskaya, G. L.
Category=Experiment other
KW=diffusion KW=PdH KW=PdD KW=Li KW=PdLiH

AU=Attas, E. M.

Attas, E.M., et al., Solar flares and 'cold fusion'. Nature (London), 1990. 344: p. 390.

CA=Chambers, K. W., CA=Dueck, W., CA=Dutton, R., CA=McIlwain, A. K.
Category=Critique
KW=Polemic KW=solar flares KW=neutron KW=critique

AU=Augustynski, J.

Augustynski, J., Commentaire: Pourquoi les experiences de 'fusion froide' de deuterium sont-elles si difficiles a reproduire. Chimia, 1989. 43: p. 99 (in French).


Category=Theory
KW=Li KW=surface analysis KW=layer KW=theory KW=OCV

AU=Augustynski, J.

Augustynski, J., M. Ulmann, and J. Liu, Electrochemical measurements on palladium cathodes in LiOD/D2O solutions related to the 'cold fusion experiments'. Chimia, 1989. 43: p. 355.

CA=Ulmann, M., CA=Liu, J.
Category=Experiment heat
KW=surface deposition KW=electrolysis KW=surface analysis KW=layer,

AU=Ault, M. R.

Ault, M.R., Cold fusion: the story behind the headlines. Radiat. Prot. Manage., 1990. 8((3)): p. 49.


Category=Review
KW=review

AU=Azbel, M. Ya.

Azbel, M.Y., Possibility of cold fusion. Solid State Commun., 1990. 76(2): p. 127.


Category=Theory
KW=review theory

AU=Azumi, K.

Azumi, K., et al., Acoustic emission from a palladium electrode during hydrogen charging and its release in a LiOH electrolyte. J. Electroanal. Chem., 1993. 347: p. 111.

CA=Ishiguro, S., CA=Mizuno, T., CA=Seo, M.
Category=Experiment particle
KW=acoustic emission KW=electrolysis KW=fractofusion KW=Pd

AU=Azzarone, D.

Azzarone, D., F. Fontana, and D. Garbelli. Hydrogen/Deuterium Loading in Thin Palladium Wires. in 8th International Conference on Cold Fusion. 2000. Lerici (La Spezia), Italy: Italian Physical Society, Bologna, Italy.

CA=Fontana, F., CA=Garbelli, D.
Category=Experiment heat
KW=Pd KW=loading KW=D2O KW=electrolysis KW=method. ICCF-8

AU=Babu, K. S. C.

Babu, K.S.C., et al., On the formation of palladium deuteride and its relationship to suspected cold fusion. Adv. Hydrogen Energy, 1990. 8 Hydrogen Energy Prog. VIII, Vol. 2),: p. 1051.

CA=Lalla, N. P., CA=Pandey, R. N., CA=Tiwari, R. S., CA=Srivastava, O. N.
Category=Experiment heat
KW=electrolysis KW=D2O H2O KW=p-d fusion KW=heat+ Pd

AU=Badurek, G.

Badurek, G., H. Rauch, and E. Seidl, Search for cold fusion in palladium-deuterium and titanium-deuterium. Kerntechnik, 1989. 54: p. 178.

CA=Rauch, H., CA=Seidl, E.
Category=Experiment particle
KW=neutron KW=gamma emission KW=titanium KW=D2

AU=Bae, Y. K.

Bae, Y.K., D.D. Lorents, and S.E. Young, Experimental confirmation of cluster-impact fusion. Phys. Rev. A: At. Mol. Opt. Phys., 1991. 44: p. R4091.

CA=Lorents, D. D., CA=Young, S. E.
Category=Experiment other
KW=cluster KW=ion bombardment

AU=Bagnulo, L. H.

Bagnulo, L.H. Crack-fusion: a Plausible Explanation of Cold Fusion. in Second Annual Conference on Cold Fusion, "The Science of Cold Fusion". 1991. Como, Italy: Societa Italiana di Fisica, Bologna, Italy.


Category=Theory
KW=fractofusion KW=theory KW=ICCF-2

AU=Bailan, R.

Bailan, R., J.P. Blaizot, and P. Bonche, Cold Fusion in a Dense Electron Gas. J. Phys. France, 1989. 50: p. 2307.

CA=Blaizot, J. P., CA=Bonche, P.
Category=Theory
KW=theory KW=screening

AU=Bailey, D. C.

Bailey, D.C., Gammas from Cold Nuclear Fusion. 1989.


Category=Theory
KW=neutron KW=gamma KW=theory

AU=Baird, J. K.

Baird, J.K., Isotope effect in hydrogen atom diffusion in metals. Phys. Rev. Lett., 1994. submitted.


Category=Experiment other
KW=diffusion KW=PdD KW=PdH,

AU=Balabanov, N. P.

Balabanov, N.P., Hypothesis to explain electrochemically induced nuclear fusion. Nauchni Tr., Plovdivski Univ., 1989. 26(4): p. 247 (in Bulgarian).


Category=Theory
KW=theory KW=fractofusion,

AU=Balbaa, I. S.

Balbaa, I.S., et al., The Effect of Lattice Distortions on the X-Ray Measurement of Lattice Parameters for PdHx: I. Empirical Relationships. J. Phys. F: Met. Phys., 1987. 17: p. 2041.

CA=Hardy, P. A., CA=San-Martin, A., CA=Coulter, P. G., CA=Manchester, F. D.
Category=Experiment other
KW=Lattice Parameter KW=PdH KW=stress

AU=Baldo, M.

Baldo, M., R. Pucci, and P.F. Bortignon, Relaxation toward equilibrium in plasmon-enhanced fusion. Fusion Technol., 1990. 18: p. 347.

CA=Pucci, R., CA=Bortignon, P. F.
Category=Theory
KW=review KW=theory

AU=Baldo, M.

Baldo, M. Enhancement of Fusion Rate Induced by the Collective Electron Excitations. in Second Annual Conference on Cold Fusion, "The Science of Cold Fusion". 1991. Como, Italy: Societa Italiana di Fisica, Bologna, Italy.


Category=Theory
KW=theory KW=electron KW=excitation screening KW=ICCF-2

AU=Balej, J.

Balej, J. and J. Divisek, Energy balance of D2O electrolysis with a palladium cathode, Part I. Theoretical relations. J. Electroanal. Chem., 1989. 278: p. 85.

CA=Divisek, J.
Category=Experiment heat
KW=heat KW=method KW=thermodynamnic KW=PdD KW=electrolysis

AU=Balescu, R.

Balescu, R., Some like it cool. Phys. Mag, 1989. 11: p. 3 (French).


Category=Review
KW=Review

AU=Balian, R.

Balian, R., J.P. Blaizot, and P. Bonche, Cold fusion in a dense electron gas. J. Phys. France, 1989. 50: p. 2307.

CA=Blaizot, J. P., CA=Bonche, P.
Category=Theory
KW=theory KW=screening KW=Born-Oppenheimer

AU=Balin, D. V.

Balin, D.V., et al., Experimental Investigation of the Muon Catalyzed d-d Fusion. Phys. Lett. B, 1984. 141(3/4): p. 173.

CA=Maev, E. M., CA=Medvedev, V. I., CA=Semenchuk, G. G., CA=Smirenin, Yu. V., CA=Vorobyov, A. A., CA=Zalite, Y. K.
Category=Miscellaneous
KW=muon

AU=Balke, B.

Balke, B., et al., Limits on neutron emission from 'cold fusion' in metal hydrides. Phys. Rev. C: Nucl. Phys., 1990. C42: p. 30.

CA=Cox, L., CA=Fackler, O., CA=Mugge, M., CA=Souers, P. C., CA=Tsugawa, R. T., CA=White, R. M.
Category=Experiment particle
KW=Ti KW=Pd KW=neutron KW=D2 KW=HD KW=DT

AU=Ban, M.

Ban, M. Tunnel Resonance Of Electron Wave And Force Of Fluctuation. in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.


Category=Theory
KW=theory

AU=Banas, J.

Banas, J., et al., Geophysical aspects of cold nuclear fusion in condensed matter. Nucl. Geophys., 1989. 3: p. 321.

CA=Ciechanowski, M., CA=Dulinski, M., CA=Kreft, A., CA=Molenda, J., CA=Morstin, K., CA=Stoklosa, A., CA=Wozniak, J.
Category=Experiment particle
KW=neutron KW=gamma emission KW=cosmic ray KW=electrolysis KW=D2

AU=Baranov, D.

Baranov, D., et al. Experimental Testing of the Erzion Model by Reacting of Electron Flux on the Target. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Bazhutov, Y., CA=Khokhov, N., CA=Koretsky, V. P., CA=Kuznetsov, A. B., CA=Skuratnik, Y., CA=Sukovatkin, N.
Category=Experiment particle
KW=La-Sm KW=Li-Sn KW=La-Nd KW=electron bombardment gamma emission KW=transmutation KW=erzion ICCF-4

AU=Baranov, D.

Baranov, D., et al. Investigation of the Erzion-Nuclear Transformation by Ion Beams. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Bazhutov, Y., CA=Koretsky, V. P., CA=Plets, Y., CA=Pohil, G., CA=Sakharov, E.
Category=Theory
KW=erzion KW=transmutation KW=theory KW=ICCF-4

AU=Baranova, R. V.

Baranova, R.V., et al., Crystal Structure of Pd Hydride with Primitive Cubic Lattice. Sov. Phys. Crystallogr., 1980. 25: p. 736.

CA=Khodyrev, Yu. P., CA=Imamov, R. M., CA=Semiletov, S. A.
Category=Experiment other
KW=Pd KW=H KW=lattice Parameter KW=structure KW=PdH

AU=Baranowski, B.

Baranowski, B. and R. Wisniewski, The Electrical Resistance of Palladium and Palladium-Gold Alloy (50 wt% Au and Pd) in Gaseous Hydrogen up to 24000 at at 25Â C. Phys. Stat. Sol. A, 1969. 35: p. 593.

CA=Wisniewski, R.
Category=Experiment other
KW=Pd KW=H2 KW=resistivity KW=PdH KW=H/Pd

AU=Baranowski, B.

Baranowski, B. and R. Wisniewski, The Electrical Resistance of Palladium and Palladium-Gold Alloy (50 wt% Au and Pd) in Gaseous Hydrogen up to 24000 at at 25Ã… C. Phys. Stat. Sol. A, 1969. 35: p. 593.

CA=Wisniewski, R.
Category=Experiment other
KW=Pd KW=H2 KW=resistivity KW=PdH KW=H/Pd

AU=Baranowski, B.

Baranowski, B., High Pressure Research on Palladium-Hydrogen Systems. Pt. Met. Rev., 1972. 16-17: p. 10.


Category=Experiment other
KW=Pd KW=H KW=pressure KW=resistivity KW=PdH

AU=Baranowski, B.

Baranowski, B., S. Majchrzak, and T.B. Flanagan, A High-Pressure Investigation of the Rhodium/Palladium/Hydrogen System. J. Phys. Chem., 1973. 77: p. 35.

CA=Majchrzak, S., CA=Flanagan, T. B.
Category=Experiment other
KW=Pd KW=Rh KW=H KW=phase Diagram KW=Pd-Rh

AU=Baranowski, B.

Baranowski, B., T. Skoskiewicz, and A.W. Szafranski, The Metallic Behavior of Hydrogen in Palladium. Sov. J. Low Temp. Phys., 1975. 1: p. 296.

CA=Skoskiewicz, T., CA=Szafranski, A. W.
Category=Experiment heat
KW=Pd KW=H2 KW=PdH KW=density Of States KW=Heat Capacity KW=superconductivity

AU=Baranowski, B.

Baranowski, B. and S. Majorowski, Activation Volume for Hydrogen Diffusion in Palladium Hydride. J. Less-Common Met., 1984. 98: p. L27.

CA=Majorowski, S.
Category=Experiment other
KW=PdH KW=diffusion KW=H,

AU=Baranowski, B.

Baranowski, B., S. Filipek, and W. Raczynski, Investigation of Some Metal-Hydrogen Systems in the High Pressure Region. J. Less-Common Met., 1984. 101: p. 115.

CA=Filipek, S., CA=Raczynski, W.
Category=Experiment other
KW=Pd KW=D2 KW=diffusion KW=pressure KW=Al KW=H2 KW=thermodynamic KW=loading

AU=Baranowski, B.

Baranowski, B., et al., Search for 'cold fusion' in some Me-D systems at high pressures of gaseous deuterium. J. Less-Common Met., 1990. 158: p. 347.

CA=Filipek, S. M., CA=Szustakowski, M., CA=Farny, J., CA=Woryna, W.
Category=Experiment particle
KW=Pd KW=neutron KW=heat- KW=electrolysis KW=D2O KW=D2 KW=CR-39 KW=high pressure KW=Ni KW=negative

AU=Baranowski, B.

Baranowski, B., S. Filipek, and W. Raczynski, Electrolytic charging of palladium by deuterium at normal and high pressure conditions. Pol. J. Chem., 1994. 68: p. 845.

CA=Filipek, S., CA=Raczynski, W.
Category=Experiment heat
KW=electrolysis KW=Pd KW=pressure KW=loading KW=D2 KW=D2

AU=Barker, W. A.

Barker, W.A., Electrostatic voltage excitation process and apparatus. 1990: US 4,961,880.


Category=Miscellaneous
KW=radioactivity KW=half-life KW=patent

AU=Barker, W. A.

Barker, W.A., Method for enhancing alpha decay in radioactive materials. 1991: US 5,076,971.


Category=Miscellaneous
KW=radioactivity KW=half-life KW=patent

AU=Barrowes, S. C.

Barrowes, S.C. and H.E. Bergeson. Linear, High Precision, Redundant Calorimeter. in Fourth International Conference on Cold Fusion. 1994. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Bergeson, H. E.
Category=Experiment heat
KW=calorimeter KW=method KW=ICCF-4

AU=Bartolomeo, C.

Bartolomeo, C., et al. Alfred Coehn and After: The Alpha, Beta and Gamma of the Palladium-Hydrogen System. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Feischmann, M., CA=Larramona, G., CA=Pons, S., CA=Roulett, J., CA=Sugiura, H., CA=Preparata, G.
Category=Experiment particle
KW=Pd KW=hydrogen KW=KW=diffusion KW=phase diagram KW=Coehn KW=gamma phase ICCF-4 PdH

AU=Barton, J. C.

Barton, J.C. and F.A. Lewis, Interface Impedance and the Apparent Electrical Resistance of Palladium Hydrides in Aqueous Solutions. Trans. Faraday Soc., 1962. 58: p. 103.

CA=Lewis, F. A.
Category=Experiment other
KW=resistance KW=PdH KW=resistivity

AU=Barton, J. C.

Barton, J.C., F.A. Lewis, and I. Woodward, Hysteresis of the Relationships Between Electrical Resistance and Hydrogen Content of Palladium. Trans. Faraday Soc., 1963. 59: p. 1201.

CA=Lewis, F. A., CA=Woodward, I.
Category=Experiment other
KW=Pd KW=H2 KW=resistance KW=magnetic Susceptibility

AU=Barton, J. C.

Barton, J.C., J.A.S. Green, and F.A. Lewis, Changes of Electrode Potential and Electrical Resistance as a Function of the Hydrogen Content of some Pd+Ni and Pd+Rh alloys. J. Am. Chem. Soc., 1965.

CA=Green, J. A. S., CA=Lewis, F. A.
Category=Experiment other
KW=Pd KW=Rh KW=Ni KW=H KW=overvoltage KW=resistance KW=solubility KW=phase Diagram

AU=Barton, J. C.

Barton, J.C., W.F.N. Leitch, and F.A. Lewis, Absorption of Hydrogen by Palladized Palladium Electrodes Following Immersion in Oxidizing Solutions. Electrochim. Acta, 1966. 11: p. 1171.

CA=Leitch, W. F. N., CA=Lewis, F. A.
Category=Experiment other
KW=Pd KW=H KW=loading

AU=Barts, B. I.

Barts, B.I., D.B. Barts, and A.A. Grinenko, Theory of nuclear reactions with the participation of slow charged particles in solids. Sov. J. Nucl. Phys. Originally Oin: Yad. Fiz. 55 [1992] 79., 1992. 55: p. 45.

CA=Barts, D. B., CA=Grinenko, A. A.
Category=Theory
KW=theory KW=screening

AU=Barut, A. O.

Barut, A.O., Prediction of new tightly-bound states of H2+ (D2+) and 'cold fusion' experiments. J. Hydrogen Energy, 1990. 15: p. 907.


Category=Theory
KW=Theory KW=screening,

AU=Barwick, S. W.

Barwick, S.W., et al., Search for 0.8 MeV (3)He nuclei emitted from Pd and Ti exposed to high pressure D2. J. Fusion Energy, 1990. 9(3): p. 273.

CA=Price, P. B., CA=Williams, W. T., CA=Porter, J. D.
Category=Experiment particle
KW=neutron KW=Ti KW=Pd KW=D2 KW=alpha KW=particle emission KW=CR-39 KW=helium KW=negative

AU=Bashkirov, Yu. A.

Bashkirov, Y.A., et al., Observation of neutron emission from electrolysis of heavy water. Pis'ma Zh. Tekh. Fiz., 1990. 16(19): p. 51 (in Russian).

CA=Baranova, R. Kh., CA=Bazanin, B. G., CA=Kazakova, V. M.
Category=Experiment particle
KW=neutron KW=Pd KW=Ti KW=D2O KW=H2O KW=electrolysis

AU=Bashko, V. A.

Bashko, V.A., et al., Study of the nuclear fusion reaction in palladium by the emission of neutrons upon electrolysis". Vopr. At. Nauki Tekh. Ser.: Fiz. Radiats. Povr. Radiats. Materialoved., 1996. 2(56): p. 54.

CA=Vit'ko, V. I., CA=Goncharov, I. G., CA=Zelenskii, V. F., CA=Kovalenko, G. D., CA=Krivoruchko, S. M., CA=Ranyuk, Yu. N., CA=Tarasov, I. K.
Category=Experiment particle
KW=neutron KW=Pd KW=electrolysis KW=D2

AU=Bass, R. W.

Bass, R.W. On Empirical System ID, Possible External Electromagnetic/Electronuclear Stimulation/Actuation and Automatic Feedback Control of Cold Fusion. in The First Annual Conference on Cold Fusion. 1990. University of Utah Research Park, Salt Lake City, Utah: National Cold Fusion Institute.


Category=Theory
KW=theory ICCF-1

AU=Bass, R. W.

Bass, R.W., QRT: Quantum Resonance Triggering Principle. 1991.


Category=Theory
KW=theory KW=QRT

AU=Bass, R. W.

Bass, R.W., QRT: Quantum Resonance Triggering Principle. 1993.


Category=Theory
KW=theory

AU=Bass, R. W.

Bass, R.W. A Semi-Classical Quantized Theory of Lattice Induced Nuclear Transformations. in International Symposium on Cold Fusion and Advanced Energy Sources. 1994. Belarusian State University, Minsk, Belarus: Fusion Information Center, Salt Lake City.


Category=Theory
KW=theory

AU=Bass, R. W.

Bass, R.W. Is the Coulomb Fusion "Barrier" a Resonantly Transparent Mirror? Refutationb of the Conventional Cold Fusion 'QM-Impossibility' "Proof". in International Symposium on Cold Fusion and Advanced Energy Sources. 1994. Belarusian State University, Minsk, Belarus: Fusion Information Center, Salt Lake City.


Category=Theory
KW=theory

AU=Bass, R. W.

Bass, R.W., Experimental Evidence Favoring BrightsenÃŒs Nucleon Cluster Model. J. New Energy, 1996. 1(4): p. 59.


Category=Theory
KW=theory Brightsen Cluster

AU=Bass, R. W.

Bass, R.W., Experimental Evidence Favoring Brightsenís Nucleon Cluster Model. J. New Energy, 1996. 1(4): p. 59.


Category=Theory
KW=theory Brightsen Cluster

ABSTRACT
Brightsen’s Nucleon Cluster Model (NCM) predicts that a relatively low-energy photon can stimulate a nuclear transmutation under certain specified conditions. Examination of an experiment by Lin & Bockris demonstrates that the transmutation of mercury-201 to gold-197 induced by a mere exothermic chemical reaction (burning gunpowder) is an actual concrete example of a novel process predicted by the NCM.

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AU=Bass, R. W.

Bass, R.W., A High School Level ExposÈ of the Mistake Upon Which the ERAB Report is Based. J. New Energy, 1997. 2(3/4): p. 22.


Category=Review
KW=ERAB KW=history

AU=Bass, R. W.

Bass, R.W., A High School Level Expos» of the Mistake Upon Which the ERAB Report is Based. J. New Energy, 1997. 2(3/4): p. 22.


Category=Review
KW=ERAB KW=history

AU=Bass, R. W.

Bass, R.W., Parmenter's Fundamental Breakthrough Contributions. Infinite Energy, 1998. 4(21): p. 45.


Category=Theory
KW=theory

Noting Dr. Parmenter's acknowledgment to me at the end of his seminal  paper, Dr. Mallove has asked me for a prefatory critique.  Frankly I feel like a kindergarten finger-painting dauber asked to appraise a Rembrandt!  In fact, in 1994 I applied seriously for a humble programmer's job at the Univ. of Arizona in hopes that by moving to Tucson I might be able to audit some of Parmenter's courses: I am awed by his mastery of the three-dimensional details, not only of Quantum Mechanics (QM) [which I know only as a 1-D point-particle theory] but of Quantum Electrodynamics (QED), Nuclear Physics, and Solid-State Physics.  I accepted this assignment only in hopes of nudging people like Dr. Barry Merriman of UCLA and Dr. Jim Peebles of Princeton to consider Parmenter's contributions with the serious care which they manifestly deserve.  I'd also hope that in the next issue of IE we receive comments on this milestone theoretical tour de force by all of the dozen other expert theoreticians mentioned below.

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AU=Bass, R. W.

Bass, R.W. and S.W. Gleeson. Recent Advances in LENT and Proposed CF via Deuterium Crystals. in INE/EEMF Conference on New Energy Conversion. 2000. INE/EEMF Conference on New Energy Conversion.

CA=Gleeson, S. W.
Category=Theory
KW=theory

AU=Bass, R. W.

Bass, R.W., Five Frozen Needles CF Protocol. J. New Energy, 2002. 6(2): p. 30.


Category=Miscellaneous
KW=Helium

ABSTRACT
 The following protocol is designed to be intuitively convincing to a layman who, if told that needles 2, 3 and 4 have been pulsed with constant-voltage DC-electricity for twice, thrice and quadruple the amount of time as needle 1, and then measured to contain twice, thrice and quadruple the amount of He4 as the first needle, will instantly reject any doubt that the electrical pulse was creating He4 from some form of nuclear-chemistry process whose action was directly proportional to the amount of DC electrical energy used. At the same time, the protocol is sufficiently statistically sophisticated in its rigorous application of Experiment Design theory as to satisfy the most skeptical and informed critic.

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AU=Basteev, A. V.

Basteev, A.V. and L.A. Nechiporenko, Activation of solid-phase deflagration of hydrogen-containing energy-storing substances. Int. J. Hydrogen Energy, 1994. 19: p. 739.

CA=Nechiporenko, L. A.
Category=Review
KW=review KW=fractofusion,

AU=Batalla, E.

Batalla, E., E.G. Zwartz, and B.A. Judd, In-situ X-ray diffraction of palladium cathodes in electrolytic cells. Solid State Commun., 1989. 71: p. 805.

CA=Zwartz, E. G., CA=Judd, B. A.
Category=Experiment particle
KW=tetrahedral structure KW=gamma phase lattice parameter

AU=Battaglia, A.

Battaglia, A., et al., Neutron emission in Ni-H systems. Nuovo Cimento Soc. Ital. Fis. A, 1999. 112 A: p. 921.

CA=Daddi, L., CA=Focardi, S., CA=Gabbani, V., CA=Montalbano, V., CA=Piantelli, F., CA=Sona, P. G., CA=Veronesi, S.
Category=Experiment particle
KW=Ni KW=H2 KW=neutron,

AU=Baurichter, A.

Baurichter, A., et al., Search for cold fusion in palladium. Z. Phys. B: Condens. Matter, 1989. 76: p. 1.

CA=Eyrich, W., CA=Frank, M., CA=Goehr, H., CA=Kreische, W., CA=Ortner, H., CA=Roeseler, B., CA=Schiller, C. A., CA=Weeske, G., CA=Witthun, W.
Category=Experiment particle
KW=neutron KW=gamma emission Pd D2O KW=electrolysis

AU=Bazhutov, Y.

Bazhutov, Y., B.A. Khrenov, and G.B. Khristiansen, About one opportunity of second shower spectrum interpretation observed at small depth underground. Isv. Akad. Nauk USSR, ser. phys., 1982. 46(9): p. 2425.

CA=Khrenov, B. A., CA=Khristiansen, G. B.
Category=Theory
KW=theory new particle erzion

AU=Bazhutov, Y.

Bazhutov, Y., et al. Interpretation of cold nuclear fusion by means of erzion catalysis. in Fiz. Plazmy Nekotor. Vopr. Obshch. Fiz. M. 1990.

CA=Vereshkov, G. M., CA=Kuz'min, R. N., CA=Frolov, A. M.
Category=Theory
KW=theory KW=erzion new particle

AU=Bazhutov, Y.

Bazhutov, Y., et al. Study of the possibility of a cold nuclear fusion reaction by electrolysis of heavy water with a titanium electrode. in Teo. Eksp. Issled. Vopr. Obshch. Fiz., Min. Obshch. Mashin. SSSR. 1991.

CA=Kuznetsov, A. B., CA=Surova, T. D., CA=Chertov, Yu. P.
Category=Experiment particle
KW=Ti KW=tritium KW=x-ray KW=electrolysis KW=D2

AU=Bazhutov, Y.

Bazhutov, Y., et al. Excess Heat Observation During Electrolysis of Cs2CO3 Solution in Light Water. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=Chertov, Yu. P., CA=Krivoshein, A. A., CA=Skuratnik, Ya. B., CA=Khokhlov, N. I.
Category=Experiment particle
KW=Cs2CO3 KW=Ni KW=H2O KW=heat+ KW=tritium KW=ICCF-4

AU=Bazhutov, Y.

Bazhutov, Y. Erzion Model of Catalytic Nuclear Transmutation and Its Interpretation of Ball-Lightning and Other Anomalous Geophysical Phenomena. in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.


Category=Theory
KW=theory KW=Erzion KW=caviation KW=tritium KW=neutron KW=new particle KW=ICCF-6

AU=Bazhutov, Y.

Bazhutov, Y. and V.P. Koretsky. Possibility of Radioactive Waste Utilization in Terms of the Erzion Model. in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.

CA=Koretsky, V. P.
Category=Theory
KW=theory KW=Erzion KW=caviation KW=tritium KW=neutron KW=new particle KW=ICCF-6

AU=Bazhutov, Y.

Bazhutov, Y., et al. Tritium, Neutron, and Radicarbon Registration with the Yusmar Hydrofacility Running. in Sixth International Conference on Cold Fusion, Progress in New Hydrogen Energy. 1996. Lake Toya, Hokkaido, Japan: New Energy and Industrial Technology Development Organization, Tokyo Institute of Technology, Tokyo, Japan.

CA=Koretsky, V. P., CA=Kuznetsov, A. B., CA=Potapov, Yu. S., CA=Nikitsky, V. P., CA=Nevezhin, N. Ya., CA=Saunin, E. I., CA=Kordukevich, V. O., CA=Titenkov, A. F.
Category=Theory
KW=theory KW=Erzion KW=caviation KW=tritium KW=neutron KW=particle emission KW=ICCF-6

AU=Bazhutov, Y.

Bazhutov, Y. Influence of Spin and Parity Preservation Lows on Erzion Model Predictions in Cold Fusion Experiments. in The Seventh International Conference on Cold Fusion. 1998. Vancouver, Canada: ENECO, Inc., Salt Lake City, UT.


Category=Theory
KW=theory KW=Ezrion KW=ICCF-7

AU=Bazhutov, Y.

Bazhutov, Y. and V.P. Koretsky. Neutron Generation at Ultrasonic Cavitation of Some Liquids. in The Seventh International Conference on Cold Fusion. 1998. Vancouver, Canada: ENECO, Inc., Salt Lake City, UT.

CA=Koretsky, V. P.
Category=Experiment particle
KW=neutron KW=cavitation KW=Ti KW=ultrasound ICCF-7

AU=Bazhutov, Y.

Bazhutov, Y. Erzion Discovery in Cosmic Rays and its Possible Great Role in Nature in Framework of Erzion Model of Cold Nuclear Transmutation. in 8th International Conference on Cold Fusion. 2000. Lerici (La Spezia), Italy: Italian Physical Society, Bologna, Italy.


Category=Theory
KW=erzion KW=transmutation cosmic ray KW=theory new particle KW=ICCF-8

AU=Bazhutov, Y.

Bazhutov, Y., et al. Calorimetric And Neutron Diagnostics Of Liquids During Laser Irradiation. in Eleventh International Conference on Condensed Matter Nuclear Science. 2004. Marseille, France.

CA=Bazhutova, S., CA=Dyadkin, A., CA=Nekrasov, V., CA=Sharkov, V.
Category=Miscellaneous

AU=Bazhutov, Y.

Bazhutov, Y. and E. Pletnikov. Search For Erzion Nuclear Catalysis Chains From Cosmic Ray Erzions Stopping In Organic Scintillator. in Eleventh International Conference on Condensed Matter Nuclear Science. 2004. Marseille, France.

CA=Pletnikov, E.
Category=Theory
KW=theory

AU=Bazhutov, Y.

Bazhutov, Y. Erzion Model Features In Cold Nuclear Transmutation Experiments. in 8th International Workshop on Anomalies in Hydrogen / Deuterium Loaded Metals. 2007. Sicily, Italy.


Category=Theory
KW=theory

AU=Bazhutov, Y.

Bazhutov, Y. Role of Russian Scientists in CMNS - Conference Proceedings 1991-2007. in ICCF-14 International Conference on Condensed Matter Nuclear Science. 2008. Washington, DC.


Category=Theory
KW=Theory

AU=Bearden, T. E.

Bearden, T.E., Use of Asymmetrical Regauging and Multivalued Potentials to Achieve Over-Unity Electromagnetic Engines. J. New Energy, 1996. 1(2): p. 60.


Category=Miscellaneous
KW=ZPE,

AU=Bearden, T. E.

Bearden, T.E., EM Corrections Enabling a Practical Unified Field Theory with Emphasis on Time-Charging Interactions of Longitudinal EM Waves. J. New Energy, 1998. 3(2/3): p. 12.


Category=Miscellaneous
KW=ZPE,

AU=Bearden, T. E.

Bearden, T.E., Purported Over-Unity Results by Hewlett Packard. J. New Energy, 1998. 3(1): p. 98.


Category=Miscellaneous
KW=ZPE,

AU=Beaudette, C. G.

Beaudette, C.G., Excess Heat: Why Cold Fusion Research Prevailed. 2002, Concord, NH: Oak Grove Press.


Category=Review
KW=history book

This is a complete copy of the book.
 
LENR-CANR would like to thank the author, Charles Beaudette, for giving us permission to upload this important book.
 
Rather than print the entire text, we recommend you purchase the book from:
 
Amazon.com
http://www.amazon.com/gp/product/0967854830/
 
or
 
Infinite Energy Magazine
https://www.mv.com/ipusers/zeropoint/secure/FORMS/onlinestore.html

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AU=Beaudette, C. G.

Beaudette, C.G., Response to the DOE/2004 Review of Cold-Fusion Research. 2005, Oak Grove Press: South Bristol, ME.


Category=Review
KW=Review

During 2004, the Office of Science of the U. S. Department of Energy (DOE/OS) initiated and completed a peer-review of the field in science known as cold-fusion research (CFR). The DOE/OS selected eighteen Reviewers for their expertise in the relevant scientific specialties. Remaining largely anonymous, they studied a collection of papers about the field selected and prepared by several of the scientists who have been active in CFR for the past sixteen y ears. Those scientists also presented selected accomplishments to some of the Reviewers during a one day meeting. The following three questions (paraphrased) were asked of the Reviewers: (1) Is there evidence of low-energy-nuclear-reactions (LENR), (2) do such reactions really occur, and (3) should research efforts be continued?

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AU=Becker, E. W.

Becker, E.W., Triple collision reaction of deuterons as a possible explanation of cold nuclear fusion. Naturwiss., 1989. 76: p. 214.


Category=Experiment other
KW=nuclear reaction Li D2 Helium

AU=Beddingfield, D. H.

Beddingfield, D.H., et al. Characterization of Charged Particle Bursts from Deuterium Loaded Thin Titanium Foils. in Second Annual Conference on Cold Fusion, "The Science of Cold Fusion". 1991. Como, Italy: Societa Italiana di Fisica, Bologna, Italy.

CA=Cecil, F. E., CA=Galovich, C. S., CA=Liu, H., CA=Asher, S.
Category=Experiment particle
KW=Ti KW=D2 KW=particle emission KW=lattice parameter KW=metallurgy KW=loading KW=ICCF-2

AU=Begley, S.

Begley, S., E. Jones, and T. Waldorf, A Sun in a Test Tube?, in Newsweek. 1989. p. 58.

CA=Jones, E., CA=Waldorf, T.
Category=News report
KW=history

AU=Begley, S.

Begley, S., et al., The Race for Fusion, and The Follies of Science, in Newsweek. 1989. p. 49.

CA=Hurt, H., CA=Murr, A., CA=Rogers, M.
Category=News report
KW=history KW=newspaper

AU=Begley, S.

Begley, S., Cold Fusion Isn't Dead, It's Just Withering From Scientific Neglect, in Wall Street Journal. 2003. p. B1.


Category=News report
KW=Review

AU=Behrisch, R.

Behrisch, R., et al., Search for fusion reactions between deuterium atoms implanted into titanium. Nucl. Fusion, 1989. 29(7): p. 1187.

CA=Moeller, W., CA=Roth, J., CA=Scherzer, B. M. U.
Category=Experiment particle
KW=Ti KW=ion implantation KW=D2 KW=particle emission

AU=Behrisch, R.

Behrisch, R., Comment on: H. Gentsch, DD-fusion reactions at a PdAg(D) target in a minireactor, Ber. Bunsenges, Phys. Chem. 95, 1283 [1991]. Ber. Bunsenges. Phys. Chem., 1992. 96: p. 733 (in German).


Category=Experiment particle
KW=neutron KW=D+ KW=Pd.

AU=Bellanger, G.

Bellanger, G., Embrittlement of Palladium and Palladium-Silver Alloy Cathode Membranes by Tritium. Fusion Technol., 1995. 27: p. 36.


Category=Experiment particle
KW=Pd KW=Pd-Ag KW=embrittlement KW=tritium

AU=Bellanger, G.

Bellanger, G. and J.J. Rameau, Determination of tritium adsorption and diffusion parameters in a palladium-silver alloy by electrochemical impedance analysis. Fusion Technol., 1997. 32: p. 94.

CA=Rameau, J. J.
Category=Experiment particle
KW=tritium KW=diffusion KW=Pd-Ag

AU=Bellini, M.

Bellini, M., L. Casetti, and M. Rosa-Clot, Nuclear Fusion in Excited Hydrogen Molecules. Z. Phys. A: At. Nucl., 1990. 337: p. 207.

CA=Casetti, L., CA=Rosa-Clot, M.
Category=Theory
KW=Theory

AU=Belov, A. S.

Belov, A.S., V.E. Kusik, and Y.V. Ryabov, The nuclear fusion for the reactions (2)H(d,n)(3)He,(2)H(d,gamma)(4)He at low deuterons energy and 'cold' nuclear fusion. Nuovo Cimento Soc. Ital. Fis. A, 1990. A103: p. 1647.

CA=Kusik, V. E., CA=Ryabov, Yu. V.
Category=Experiment particle
KW=ion beam KW=Pd KW=neutron KW=D+

AU=Beltyukov, I. L.

Beltyukov, I.L., et al., Laser-induced cold nuclear fusion in Ti-H2-D2-T2 compositions. Fusion Technol., 1991. 20: p. 234.

CA=Bondarenko, N. B., CA=Janelidze, A. A., CA=Gapanov, M. Yu, CA=Gribanov, K. G., CA=Kondratov, S. V., CA=Maltsev, A. G., CA=Novikov, P. I., CA=Tsvetkov, S. A., CA=Zakharov, V. I.
Category=Experiment particle
KW=laser KW=titanium KW=fractofusion neutron KW=gamma emission

AU=Belzner, A.

Belzner, A., et al., Recent results on mixed conductors containing hydrogen or deuterium. Solid State Ionics, 1990. 40/41: p. 519.

CA=Bischler, U., CA=Crouch-Baker, S., CA=Guer, T. M., CA=Lucier, G., CA=Schreiber, M., CA=Huggins, R. A.
Category=Experiment heat
KW=electrolysis KW=Pd KW=D2O KW=heat+,

AU=Belzner, A.

Belzner, A., et al., Two fast mixed-conductor systems: deuterium and hydrogen in palladium - thermal measurements and experimental considerations. J. Fusion Energy, 1990. 9(2): p. 219.

CA=Bischler, U., CA=Crouch-Baker, S., CA=Guer, T. M., CA=Lucier, G., CA=Schreiber, M., CA=Huggins, R. A.
Category=Experiment heat
KW=electrolysis KW=heat+ KW=method KW=Pd KW=D2O effect of H2

AU=Benedek, G.

Benedek, G. and P.F. Bortignon, Cold nuclear fusion: viewpoints of solid-state physics. Nuovo Cimento Soc. Ital. Fis. D, 1989. 11(8): p. 1227.

CA=Bortignon, P. F.
Category=Theory
KW=theory KW=screening,

AU=Benesh, C. J.

Benesh, C.J. and J.P. Vary, Fusion rates of squeezed and screened hydrogenic nuclei. Phys. Rev. C: Nucl. Phys., 1989. 40(2): p. R495.

CA=Vary, J. P.
Category=Theory
KW=theory KW=screening distance

AU=Benetskii, B. A.

Benetskii, B.A., A.V. Klyachko, and A.I. Rozantsev, An attempt to observe cold thermonuclear fusion in a condensed medium. Ratk. Soobshch. Fiz., 1989(6): p. 58 (In Russian).

CA=Klyachko, A. V., CA=Rozantsev, A. I.
Category=Experiment particle
KW=Pd KW=D2 KW=neutron,

AU=Benford, M. S.

Benford, M.S., Biological Nuclear Reactions: Empirical Data Describes Unexplained SHC Phenomenon. J. New Energy, 1999. 3(4): p. 19.


Category=Experiment other
KW=transmutation,

AU=Bennington, S. M.

Bennington, S.M., et al., A search for the emission of x-rays from electrolytically charged palladium-deuterium. Electrochim. Acta, 1989. 34: p. 1323.

CA=Sokhi, R. S., CA=Stonadge, P. R., CA=Ross, D. K., CA=Benham, M. J., CA=Beynon, T. D., CA=Whithey, P., CA=Harris, I. R., CA=Farr, J. P. G.
Category=Experiment other
KW=x-ray KW=Pd KW=D2O KW=Pd-Li KW=negative

AU=Bennington, S. M.

Bennington, S.M., et al., In-situ measurements of deuterium uptake into a palladium electrode using time-of-flight neutron diffractometry. J. Electroanal. Chem., 1990. 281: p. 323.

CA=Benham, M. J., CA=Stonadge, P. R., CA=Fairclough, J. P. A., CA=Ross, D. K.
Category=Experiment particle
KW=neutron diffraction KW=loading KW=PdD KW=composition KW=method KW=structure

AU=Benson, T.

Benson, T., A "Micro-fusion" reactor: Nuclear reactions in "the cold" by ultrasonic cavitation. Infinite Energy, 1995. 1(1): p. 33.


Category=Experiment heat
KW=ultrasonic KW=heat+ KW=He

AU=Benson, T.

Benson, T. and T.O. Passell. Calorimetry of Energy-Efficient Glow Discharge - Apparatus Design and Calibration. in Eleventh International Conference on Condensed Matter Nuclear Science. 2004. Marseille, France.

CA=Passell, T. O.
Category=Experiment heat
KW=glow discharge KW=calorimetry

Introduction
 This work aims to develop a “family” of low-powered calorimetrically-accurate glow discharge units, similar to that reported by Dardik, et al. at ICCF-10, and to use these to test a wide range of cathode materials, electrode coatings, gas types, gas pressures, and power input levels.  We will describe the design and calibration of these units.
 The strategy is to use a large number of very similar units so that the calorimetric response does not vary significantly for a given power level.  The design is metal or sealed glass cylindrical tubes, charged with 0.4 to 50 torr mixtures of deuterium, hydrogen, argon, or helium gases.  Units operate from 0.2 watt to >2 watt power input.  The units have low mass (<400 grams) to enhance their sensitivity to excess heat, and they are designed to allow visual observation of the discharge, on-line spectroscopic analysis of the gas to follow any changes in composition, and replication of the geometry and thermal mass during numerous changes in electrode composition. . . .

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AU=Berkem, A. R.

Berkem, A.R., Nuclear fusion. Hot fusion - cold fusion. Kim. Sanayi, 1989. 31: p. 7 (in Turkish).


Category=Review
KW=Review

AU=Berkheimer, G. D.

Berkheimer, G.D. and R.E. Buxbaum., Hydrogen Pumping with Palladium Membranes. J. Vac. Sci. Technol. A, 1985. 3: p. 413.

CA=Buxbaum., R. E.
Category=Experiment other
KW=diffusion KW=PdH KW=Pd-Ag KW=H2 KW=Ag,

AU=Berlouis, L. E. A.

Berlouis, L.E.A., et al., The decomposition of electrochemically loaded palladium hydride: a thermal analysis study. J. Alloys and Compounds, 1997. 253-254: p. 207.

CA=Hall, P. J., CA=MacKinnon, A. J., CA=Wark, A. W., CA=Manuelli, D., CA=Gervais, V., CA=Robertson, J. E.
Category=Experiment other
KW=PdH KW=loading KW=thermodynamic

AU=Bernabei, R.

Bernabei, R., et al., Neutron monitoring during evolution of deuteride precipitation in Nb, Ta and Ti. Solid State Commun., 1990. 76: p. 815.

CA=Gannelli, G., CA=Cantelli, R., CA=Cordero, CA=d'Angelo, S., CA=Iucci, N., CA=Picozza, P. G., CA=Villoresi, G.
Category=Experiment particle
KW=neutron KW=cracks KW=fractofusion KW=loading KW=Pd KW=PdD KW=D2

AU=Bernardini, M.

Bernardini, M., et al. Anomalous Effects Induced by D2O Electrolysis of Titanium. in 8th International Conference on Cold Fusion. 2000. Lerici (La Spezia), Italy: Italian Physical Society, Bologna, Italy.

CA=Manduchi, C., CA=Mengoli, G., CA=Zannoni, G.
Category=Experiment heat
KW=Ti KW=D2O KW=electrolysis KW=heat KW=transmutation KW=ICCF-8

This investigation emphasizes the heat output (~1 W) measured at open circuit after the electrolysis of 0.6 M K2CO3 in D2O on titanium. This thermal phenomenon decayed slowly over the course of several days. “Post-mortem” γ-spectroscopy analysis of the Ti samples cathodized in D2O evidenced transient γ-emissions which cannot be attributed to impurities of the electrolytic system.

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AU=Berrondo, M.

Berrondo, M. Computer Simulation of D Atoms in a Pd Lattice. in Anomalous Nuclear Effects in Deuterium/Solid Systems, "AIP Conference Proceedings 228". 1990. Brigham Young Univ., Provo, UT: American Institute of Physics, New York.


Category=Theory
KW=theory distance Lattice Parameter PdD2

AU=Bertalot, L.

Bertalot, L., et al. Analysis of Tritium and Heat Excess in Electrochemical Cells With Pd Cathodes. in Second Annual Conference on Cold Fusion, "The Science of Cold Fusion". 1991. Como, Italy: Societa Italiana di Fisica, Bologna, Italy.

CA=Bettinali, L., CA=De Marco, F., CA=Violante, V., CA=De Logu, P., CA=Dikonimos, T., CA=La Barbera, A.
Category=Experiment particle
KW=Pd KW=D2O KW=heat+ KW=tritium- KW=neutron- KW=electrolysis KW=pulse loading KW=ICCF-2 KW=negative

INTRODUCTION
The origin of the excess heat [1,2] developed during the electrolysis of heavy water in “Cold Fusion” cells is up to now open to question. The necessary presence of deuterium suggests that fusion reactions can be partially or totally responsible for the generation of excess heat.
Experience has shown neutron emission to be sporadic and very weak; on the other hand tritium was found in small but detectable amounts [3,4]. Moreover if tritium accumulates in the solution it can be comfortably measured postmortem.

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AU=Bertalot, L.

Bertalot, L., et al. Study of Deuterium Charging in Palladium by the Electrolysis of Heavy Water: Search for Heat Excess and Nuclear Ashes. in Third International Conference on Cold Fusion, "Frontiers of Cold Fusion". 1992. Nagoya Japan: Universal Academy Press, Inc., Tokyo, Japan.

CA=De Marco, F., CA=De Ninno, A., CA=La Barbera, A., CA=Scaramuzzi, F., CA=Violante, V., CA=Zeppa, P.
Category=Experiment heat
KW=Pd KW=D2O KW=heat+. KW=electrolysis KW=oneside electrolysis KW=ICCF-3 KW=D2

AU=Bertalot, L.

Bertalot, L., et al. Deuterium Charging in Palladium by Electrolysis of Heavy Water: Measurement of Lattice Parameter. in Fourth International Conference on Cold Fusion. 1993. Lahaina, Maui: Electric Power Research Institute 3412 Hillview Ave., Palo Alto, CA 94304.

CA=DeMarco, F., CA=DeNinno, A., CA=Felici, R., CA=LaBarbera, A., CA=Scaramuzzi, F., CA=Violante, V.
Category=Experiment heat
KW=Pd KW=D2O KW=lattice parameter KW=loading KW=electrolysis KW=ICCF-4 KW=PdD

AU=Bertalot, L.

Bertalot, L., et al., Study of deuterium charging in palladium by the electrolysis of heavy water: heat excess production. Nuovo Cimento Soc. Ital. Fis. A, 1993. 15 D: p. 1435.

CA=De Marco, F., CA=De Ninno, A., CA=La Barbera, A., CA=Scaramuzzi, F., CA=Violante, V., CA=Zeppa, P.
Category=Experiment heat
KW=electrolysis KW=loading KW=heat+ KW=Pd KW=D2O KW=OCV KW=diffusion

AU=Bertalot, L.

Bertalot, L., et al. Power Excess Production in Electrolysis Experiments at ENEA Frascati. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.

CA=De Ninno, A., CA=De Marco, F., CA=La Barbera, A., CA=Scaramuzzi, F., CA=Violante, V.
Category=Experiment particle
KW=D2O KW=Pd KW=electrolysis KW=heat+ surface effect gamma phase ICCF-5 phase diagram

AU=Bertin, A.

Bertin, A., et al., Experimental evidence of cold nuclear fusion in a measurement under the Gran Sasso Massif. Nuovo Cimento Soc. Ital. Fis. A, 1989. 101A: p. 997.

CA=Bruschi, M., CA=Capponi, M., CA=De Castro, S., CA=Marconi, U., CA=Moroni, C., CA=Piccinini, M., CA=Semprini-Cesari, N., CA=Trombini, A., CA=Vitale, A., CA=Zoccoli, A., CA=Jones, S. E., CA=Czirr, J. B., CA=Jensen, G. L., CA=Palmer, E. P.
Category=Experiment particle
KW=neutron KW=Ti KW=D2O KW=electrolysis

AU=Bertin, A.

Bertin, A., et al., First experimental results at the Gran Sasso Laboratory on cold nuclear fusion in titanium electrodes. J. Fusion Energy, 1990. 9: p. 209.

CA=Bruschi, M., CA=Capponi, M., CA=De Castro, S., CA=Marconi, U., CA=Moroni, C., CA=Piccinini, M., CA=Semprini-Cesari, N., CA=Trombini, A., CA=Vitale, A., CA=Zoccoli, A., CA=Czirr, J. B., CA=Jensen, G. L., CA=Jones, S. E., CA=Palmer, E. P.
Category=Experiment particle
KW=Ti KW=electrolysis KW=neutron KW=D2

AU=Bertin, A.

Bertin, A., et al., Absence of tritium yield in metal-deuterium systems". Phys. At. Nucl., 1996. 59: p. 934 (orig. Yad. Fiz. 59 [1996] 976).

CA=Bruschi, M., CA=Bystritsky, V. M., CA=Capponi, M., CA=De Castro, S., CA=Cereda, B., CA=Ferretti, A., CA=Florkowski, T., CA=Galli, D., CA=Giacobbe, B., CA=Gushchin, V. V., CA=Marconi, U., CA=Massa, I., CA=Moroni, C., CA=Piccinini, M., CA=Poly, M., CA=Rivkis, L. A., CA=Sakharov, V. I., CA=Semprini-Cesari, N., CA=Spighi, R., CA=Stolupin, V. A., CA=Tebus, V. N., CA=Vecchi, S., CA=Vezzani, A., CA=Villa, M., CA=Vitale, A., CA=Wozniak, J., CA=Zavattini, G., CA=Zoccoli, A.
Category=Experiment particle
KW=Ti KW=D2 KW=tritium KW=Zr KW=Nb KW=La KW=Ni KW=Al

AU=Bertin, A.

Bertin, A., et al., Negative result of an experiment aimed at verifying the hypothesis that cold and hot nuclear fusion occurs in Ti/(D-T) and ZrNbV/(D-T) systems. Phys. At. Nucl., 1996. 59: p. 744.

CA=Bruschi, M., CA=Bystritsky, V. M., CA=Capponi, M., CA=De Castro, S., CA=Cereda, B., CA=Dugar-Zhabon, V. D., CA=Ferreti, A., CA=Galli, D., CA=Giacobbe, B., CA=Kirpal, V. I., CA=Knyazev, A. I., CA=Kravchenko, I. M., CA=Marconi, U., CA=Massa, I., CA=Merzlyakov, S. I., CA=Moroni, C., CA=Piccinini, M., CA=Poly, M., CA=Rivkis, L. A., CA=Samsonenko, N. V., CA=Semprini-Cesari, N., CA=Shvetsov, V. N., CA=Sidorov, V. T., CA=Smirnov, V. N., CA=Sorokin, S. I., CA=Spighi, R., CA=Starshin, E. P., CA=Stolupin, V. A., CA=Strelkov, A. V., CA=Vecchi, S., CA=Vezzani, A., CA=Villa, M., CA=Vitale, A., CA=Wozniak, J., CA=Zavattini, G., CA=Zhuravlev, N. I., CA=Zoccoli, A.
Category=Experiment particle
KW=neutron KW=Ti KW=Zr-Nb-V KW=tritium KW=fractofusion

AU=Bertolotti, M.

Bertolotti, M., et al. Nondestructive Evaluation of the Thermal Properties of Palladium-Hydrogen Compounds by Photothermal Techniques. in The Seventh International Conference on Cold Fusion. 1998. Vancouver, Canada: ENECO, Inc., Salt Lake City, UT.

CA=Liakhou, G. L., CA=Li Voti, R., CA=Paoloni, S., CA=Sibilia, C., CA=Violante, V.
Category=Experiment other
KW=thermal conductivity KW=PdH KW=resistivity ICCF-7

AU=Bertulani, C. A.

Bertulani, C.A. and L.F. Canto, Semiclassical calculation of Coulomb break-up of weakly bound nuclei. Nucl. Phys. A, 1992. 539: p. 163.

CA=Canto, L. F.
Category=Theory
KW=theory

AU=Besenbacher, F.

Besenbacher, F., et al., Interaction of hydrogen isotopes with metals: deuterium trapped at lattice defects in palladium. J. Fusion Energy, 1990. 9(4): p. 257.

CA=Bech, N. B., CA=Noerskov, J. K., CA=Myers, S. M., CA=Nordlander, P.
Category=Theory
KW=Theory KW=implantation KW=H2 defect

AU=Besenbacher, F.

Besenbacher, F., et al., Search for cold fusion in plasma-charged Pd-D and Ti-D systems. J. Fusion Energy, 1990. 9(3): p. 315.

CA=B., Bech N., CA=Hornshoej, P., CA=Laesgaard, E., CA=Rud, N.
Category=Experiment particle
KW=gas discharge KW=neutron KW=Pd KW=Ti KW=layer KW=Cu KW=ion implantation

AU=Betteridge, W.

Betteridge, W. and J. Hope, The separation of hydrogen from gas mixtures:a process of absorption and desorption by palladium. Pt. Met. Rev., 1974. 18-19: p. 50.

CA=Hope, J.
Category=Experiment other
KW=Pd KW=H KW=loading KW=absorption

AU=Beuhler, R. J.

Beuhler, R.J., G. Friedlander, and L. Friedman, Cluster-Impact Fusion. Phys. Rev. Lett., 1990. 63: p. 1292.

CA=Friedlander, G., CA=Friedman, L.
Category=Experiment other
KW=cluster Impact KW=ion bombardment KW=Ti KW=D

AU=Beuhler, R. J.

Beuhler, R.J., et al., Deuteron-Deuteron Fusion by Impact of Heavy-Water Clusters on Deuterated Surfaces. J. Phys. Chem., 1991. 94: p. 7665.

CA=Chu, Y. Y., CA=Friedlander, G., CA=Friedman, L., CA=Kunnmann, W.
Category=Experiment other
KW=cluster Impact KW=ion bombardment KW=Ti Zr KW=D

AU=Beuhler, R. J.

Beuhler, R.J., G. Friedlander, and L. Friedman, Cluster-impact Fusion [Erratum]. Phys. Rev. Lett., 1992. 88: p. 2108.

CA=Friedlander, G., CA=Friedman, L.
Category=Miscellaneous
KW=Cluster Impact

AU=Bhadkamkar, A.

Bhadkamkar, A. and H. Fox, Electron Charge Cluster Sparking in Aqueous Solutions. J. New Energy, 1996. 1(4): p. 62.

CA=Fox, H.
Category=Miscellaneous
KW=charge cluster KW=discharge

AU=Bharadwaj, S. R.

Bharadwaj, S.R., et al., The Palladium-Platinum Phase Diagram. J. Less-Common Met., 1991. 169: p. 167.

CA=Kerkar, A. S., CA=Tripathi, S. N., CA=Dharwadkar, S. R.
Category=Experiment other
KW=Pd KW=Pt KW=phase diagram

AU=Bhattacharjee, J. K.

Bhattacharjee, J.K., L. Satpathy, and Y.R. Waghmare, A possible mechanism of cold fusion. Pramana, 1989. 32: p. L841.

CA=Satpathy, L., CA=Waghmare, Y. R.
Category=Theory
KW=Theory KW=screening

AU=Biberian, J. P.

Biberian, J.P. Excess Heat Measurements in AlLaO3 Doped with Deuterium. in 5th International Conference on Cold Fusion. 1995. Monte-Carlo, Monaco: IMRA Europe, Sophia Antipolis Cedex, France.


Category=Experiment particle
KW=heat+ KW=AlLaO3 KW=D2 KW=solid state KW=proton conductor KW=neutron KW=ICCF-5

AU=Biberian, J. P.

Biberian, J.P., et al. Electrolysis of LaAlO3 Single Crystals and Ceramics in a Deuteriated Atmosphere. in The Seventh International Conference on Cold Fusion. 1998. Vancouver, Canada: ENECO, Inc., Salt Lake City, UT.

CA=Lonchampt, G., CA=Bonnetain, L., CA=Delepine, J.
Category=Experiment heat
KW=LaAlO3 KW=proton conductor heat+ single crystal KW=ICCF-7

Abstract
 We have measured excess heat in solid state electrolytes, namely La0.95AlO3, in deuterium gas atmospheres. We have shown that an excess heat of 50 mW is observed at 550 °C, with an input power of 2 mW. However, at 620 °C, a temperature decrease has been observed. Those results have been obtained with ceramics, and attempts to do the same with single crystals have failed so far. We believe that both positive and negative temperature changes cannot be explained by a chemical reaction within the crystal.

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AU=Biberian, J. P.

Biberian, J.P. and G. Lonchampt. Deuterium Gas Loading of Palladium Using a Solid State Electrolyte. in The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science. 2002. Beijing, China: Tsinghua Univ. Press.

CA=Lonchampt, G.
Category=Experiment heat
KW=Pd KW=D2 KW=heat loading KW=ICCF-9

ABSTRACT
A palladium foil cathode, 50 mm in diameter, 100 µm thick is placed between two anodic palladium foils of same dimensions. A proton conductor layer (poly-ethyleneoxide) (PEO) and phosphoric acid) is deposited between the cathode and the two anodes. The system is placed in a chamber filled with deuterium gas, at a temperature of 75°C. At first, deuterium fills the two anodes up to D/Pd = 0.48 measured by pressure decrease. Then a voltage is applied between cathode and anodes, and the cathode gets loaded by D+ electrochemical migration through the solid state electrolyte. Correspondingly, the pressure decreases. Loadings of up to 0.73 have been obtained. When voltages are reversed, the cathode deloads, and the pressure in the chamber increases. This method is well suited to measure over-potentials and absolute loadings. The input power is very low, since the production of D+ ions entering the cathode is close to 100% whereas in liquid electrolyte cells, a small fraction of the ions produced is absorbed by the cathode. Therefore excess heat measurement is easily detected.

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AU=Biberian, J. P.

Biberian, J.P., Rapport sur L'International Conference on Cold Fusion ICCF9 Pekin, Chine, 20-24 mai 2002. 2002, CRMC2-CNRS.


Category=Review
KW=Trip Report KW=ICCF9 KW=history

1 - Introduction
La  neuvième  conférence internationale sur la fusion froide ICCF9 s.est tenue à Pékin en Chine, du 20 au 24 mai. Une centaine de personnes de  15  nationalités  différentes  y  ont participé. Elle était organisée par le Professeur Xing Z. Li, de l.Université de Tsinghua. Ce fut l.occasion de prendre connaissance des derniers développements sur le sujet.  Une  analyse  globale fait apparaître quelques point intéressants : Cinq pays sont particulièrement dynamiques dans ce secteur de la recherché . . .

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AU=Biberian, J. P.

Biberian, J.P. and G. Lonchampt. Excess heat observed during electrolysis of deuterated phosphoric acid with palladium electrodes and a solid state electrolyte in deuterium gas (PowerPoint slides). in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.

CA=Lonchampt, G.
Category=Experiment heat
KW=proton conductor KW=heat

AU=Biberian, J. P.

Biberian, J.P. and G. Lonchampt. Excess heat observed during electrolysis of deuterated phosphoric acid with palladium electrodes and a solid state electrolyte in deuterium gas. in The 12th International Conference on Condensed Matter Nuclear Science. 2005. Yokohama, Japan.

CA=Lonchampt, G.
Category=Experiment heat
KW=proton conductor KW=heat

AU=Biberian, J. P.

Biberian, J.P. and N. Armanet. Excess Heat During Diffusion of Deuterium Through Palladium. in The 13th International Conference on Condensed Matter Nuclear Science. 2007. Sochi, Russia.

CA=Armanet, N.
Category=Experiment heat
KW=gas loading KW=excess heat

Abstract:
We have developed a mass flow calorimeter enabling us to measure accurately excess heat production during deuterium diffusion through the walls of palladium tubes. The experiment consists usually of a palladium tube 10 cm long, 2mm outer diameter with 200 μm thick walls, and closed at one end. Deuterium gas is introduced in the tube at various pressures, and temperatures and diffuses out through the walls of the tube. The tube, heated by a resistor, is positioned inside a reactor cell which is a small vacuum chamber. The reactor cell is positioned inside a second vacuum chamber. The outer walls of the vacuum chamber are water cooled. Thermal energy is determined by measuring inlet and outlet temperatures and water mass flow. The energy yield of this calorimeter is 95-98 % depending on input power.

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AU=Biberian, J. P.

Biberian, J.P. and N. Armanet. Excess Heat Production During Diffusion Of Deuterium Through Palladium Tubes. in 8th International Workshop on Anomalies in Hydrogen / Deuterium Loaded Metals. 2007. Sicily, Italy.

CA=Armanet, N.
Category=Experiment heat
KW=gas loading KW=excess heat

Following the work by several researchers we have undertaken experiments with deuterium gas flowing through the walls of a palladium tube. Tubes were heated at various temperatures and either filled with palladium powder or palladium compounds or empty. Our mass flow calorimeter enables us to accurately measure excess heat production. We usually used palladium tubes 10 cm long, 2 mm outer diameter with 200 µm thick walls, and closed at one end. Deuterium gas is introduced in the tube at various pressures, and temperatures and diffuses out through the walls of the tube. Thermal energy is determined by measuring inlet and outlet temperatures of cooling water and its mass flow. The energy yield of this calorimeter is 95-98% depending on input power. Our best result so far is an excess heat of 3 W with an input power of 47 W using an oxidized palladium tube filled with palladium powder. In addition to these results we describe an experiment where temperature oscillations have been measured, indicating the importance of temperature in excess heat production.

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AU=Bigeleisen, J.

Bigeleisen, J. and E.C. Kerr, Vapor-Liquid Equilibria of Dilute Solutions of HT in e-H2 and DT in e-D2 from the Triple Points to the Critical Temperatures of the Solutions. J. Chem. Phys., 1963. 39: p. 763.

CA=Kerr, E. C.
Category=Experiment particle
KW=H KW=tritium D KW=fractionation KW=separation

AU=Birgul, O.

Birgul, O., et al., Electrochemically induced fusion of deuterium using surface modified palladium electrodes. J. Eng. Env. Sci., 1990. 14(3): p. 373.

CA=Celebi, S., CA=Ozdural, A., CA=Pekmez, K., CA=Yildiz, A., CA=Yurum, Y., CA=Doga-Turk
Category=Experiment particle
KW=gamma emission electrolysis KW=Pd KW=D2O KW=H2O heat

AU=Biris, A.

Biris, A., et al., Solubility of Deuterium in LaNi5. J. Less-Common Met., 1997. 49: p. 477.

CA=Bucur, R. V., CA=Ghete, P., CA=Indrea, E., CA=Lupu, D.
Category=Experiment other
KW=D2 KW=LaNi5 KW=phase diagram KW=solubility KW=pressure

AU=Birnbaum, H. K.

Birnbaum, H.K., et al., Hydrogen in aluminum. J. Alloys and Compounds, 1997. 253-254: p. 260.

CA=Buckley, C., CA=Zeides, F., CA=Sirois, E., CA=Rozenak, P., CA=Spooner, S., CA=Lin, J. S.
Category=Experiment other
KW=H KW=Al KW=lattice parameter KW=AlH KW=loading

AU=Bishop, J. E.

Bishop, J.E., Cold Comfort on Cold Fusion Front, in The Wall Street Journal. 1989: NYEditor. p. 1.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Cold Fusion Generating Lots of Heat, Little Light, in The Wall Street Journal. 1989: New YorkEditor.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Heat Source in Fusion Find May Be Mystery Reaction and Brigham Young Physicists Reveal Details of Second H-Fusion Discovery and Will New Energy Sources Soon Power U.S.?, in Wall Street Journal. 1989.


Category=News report
KW=newspaper KW=history

AU=Bishop, J. E.

Bishop, J.E. and J.M. Schlesinger, Japan's Cold Fusion Effort Produces Startling Claims of Bursts of Neutrons, in The Wall Street Journal. 1989: NYEditor. p. 3.

CA=Schlesinger, J. M.
Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E. and K. Wells, Taming H-Bombs? : Utah Scientists Claim Breakthrough in Quest for Fusion Energy, in The Wall Street Journal. 1989: NYEditor.

CA=Wells, K.
Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Cold Fusion' Chemists Reiterate Claim; Other Scientists Report Similar Results, in Wall Street Journal. 1990: New YorkEditor. p. B4.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., 'Cold Fusion' Gets Cold Shoulder From Many a Year After Findings, in The Wall Street Journal. 1990: NYEditor.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Cold Fusion' May Keep Earth's Core Molten, in Wall Street Journal. 1990: New YorkEditor. p. B1.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Cold Fusion Research Dispels Some Doubts, in The Wall Street Journal. 1990.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Future of Hot Fusion is Boiling Down to the Behavior of a Few Helium Atoms, in Wall Street Journal. 1990: New YorkEditor. p. B1.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Scientist Says `Cold Fusion' Tests May Have Had Some Impure Rods, in Wall Street Journal. 1990: New YorkEditor.


Category=News report
KW=history KW=newspaper,

AU=Bishop, J. E.

Bishop, J.E., 'Cold Fusion' Researcher Asserts Dozens of Tests Can't be 'Ignored", in The Wall Street Journal. 1991: NYEditor. p. 6.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Cold Fusion Verdict May Be Delivered Soon, in Wall Street Journal. 1991: NYEditor.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Utah Funds for Cold Fusion Run Low Just as Concept Gets Boost From Navy, in Wall Street Journal. 1991: New YorkEditor. p. B4.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., Predictable Heat Source Reported from `Heavy' Water Electrolysis, in Wall Street Journal. 1992: New YorkEditor. p. B12.


Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E. and J.M. Schlesinger, Researcher Claims to Replicate Japanese Experiments in `Cold Fusion', in Wall Street Journal. 1992: New YorkEditor. p. B3.

CA=Schlesinger, J. M.
Category=News report
KW=history KW=newspaper

AU=Bishop, J. E.

Bishop, J.E., A Bottle Rekindles Scientific Debate About the Possibility of Cold Fusion, in Wall Street Journal. 1996: New YorkEditor.


Category=News report
KW=history

AU=Bittner, M.

Bittner, M., et al., Method for investigation of fusion reactions in condensed matter. Fusion Technol., 1990. 18: p. 120.

CA=Meister, A., CA=Ohms, D., CA=Paffrath, E., CA=Rahner, D., CA=Schwierz, R., CA=Seeliger, D., CA=Wiesener, K., CA=Wuestner, P.
Category=Experiment particle
KW=electrolysis KW=Pd KW=D2O KW=H2O KW=neutron,

AU=Bittner, M.

Bittner, M., et al., Emission of DD-fusion neutrons from a massive palladium cyclinder during electrolytic infusion of deuterons into the metal". Isotopenpraxis, 1991. 27: p. 274.

CA=Meister, A., CA=Ohms, D., CA=Paffrath, E., CA=Rahner, D., CA=Schwierz, R., CA=Seeliger, D., CA=Wiesener, K., CA=Wuestner, P.
Category=Experiment particle
KW=electrolysis KW=Pd KW=large current KW=neutron,

AU=Bittner, M.

Bittner, M., et al., Evidence for the production of d-d fusion neutrons during electrolytic infusion of deuterons into a palladium cylinder. Fusion Technol., 1991. 19: p. 2119.

CA=Ludwig, G.,