UNCLASSIFIED/ /Pelt err1e1J1tt l!ISI!!! 8HL'I 15 Podkletnov, E. and Nieminen, R., "A Possibility of Gravitational Force Shielding by Bulk YBa2Cu3O7-x Superconductor," Physica C, Vol. 203, 1992, pp. 441-444 16 Li, N. and Torr, D. G., "Effects of a Gravitomagnetic Field on Pure Superconductors," Phys . Rev. D, Vol. 43, No. 2, 1991, pp. 457-459 17 Li, N. and Torr, D. G., "The Gravitoelectrodynamics of Superconductors: A Theoretical Basis for a Principle of Electrically Induced Gravitation," Bull. Am. Phys. Soc., Vol. 37, No. 2, 1992, Session G8 paper 10 18 Li, N. and Torr, D. G., "Gravitoelectric- Electric Coupling via Superconductivity," Found. Phys. Lett., Vol. 6, No. 4, 1993, pp. 371-383 19 Dewitt, B.S., "Superconductors and Gravitational Drag, " Physical Review Letters, Vol. 16, 1966, p. 1902 20 Ross, D.K., "The London Equation for Superconductors in a Gravitational Field," Journal of Physics A, Vol. 16, 1983, pp . 1331 - 1335 21 Prof. Pentti Kettunen, Tampere, Finland, private communication, 2007 22 Risto Nieminen, Tampere, Fin land, private communication, 2007 23 de Podesta, M., Bull, M., "Alternative Explanation of "Gravitational Screening" Experiments," Physica C, Vol. 253, 1995, pp 199-200 24 Prof. R. Gonnelli, Turin, Italy, private communicatio n, 1999 25 Woods, R. C., Cooke, S. G., Helme, J., and Caldwell, C. H., "Gravity Modification by High-Temperature Superconductors," AIAA-2001-3363, 37th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, Salt Lake City, UT, July 2001. 26 Kowitt, M., "Gravitomagnetism and Magnetic Permeability in Superconductors," Phys . Rev. B, Vol. 49, 1994, pp. 704-708 27 Harris, E. G., "Comments on 'Gravitoelectric-electric Coupling via Superconductivity'," Found. Phys. Lett ., Vol. 12, 1999, pg. 201 28 Podkletnov, E., "Weak Gravitationa l Shielding Properties of Composite Bulk YBCO Superconductor below 70K under EM Field" LANL cond-mat/9701074 v .3, 16 Sept 1997 29 Li, N., Noever, D., Robertson, T., Koczor, R., and Brantley, W., "Static Test for a Gravitational Force Coupled to Type II YBCO Superconductors," Physica C, Vol. 281, 1997, pp. 260-267 30 Noever, D., and Koczor, R., "Radio-freq uency Illuminated Superconductive Disks: Reverse Josephson Effects and Implications for Precise Measuring of Proposed Gravity Effects," NASA JPL 9th Advanced Space Propulsion Research Workshop & Conference, Pasadena, CA, 1998 31 Noever, D., Koczor, R., Roberson, R., "Superconductor-Mediated Modification of Gravity? AC Motor Experiments with Bulk YBCO Disks in Rotating Magnetic Fields," AIAA-98-3139, 34th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, Cleveland, OH, July 1998 32 Reiss, H. D., "A Possible Interaction between Gravity and High Temperature Superconductivity - by a Materials Property?," 15th European Conference on Thermophysical Properties, Wuerzburg, Germany, Sept 1999 33 Reiss, H. D., "Weight Anomalies Observed during Cool-Down of High Temperature Superconductors," Phys . Essays, Vol. 16, 2003, pp. 236-253 34 Podkletnov, E. and Modanese, G., "Impulse Gravity Generator Based on Charged YBa2Cu3O7-y Superconductor with Composite Crystal Structure," arXiv : physics/0108005, Aug . 2001 35 Hathaway, G., Cleveland, B., and Bao, Y., "Gravity Modification Experiment using a Rotating Superconducting Disk and Rad io Frequency Fields," Physica C, Vol. 385, 2003, pp. 488-500 36 Tajmar, M., and De Matos, C., "Coup ling of Electromagnetism and Gravitation in the Weak Field Approximation," Jnl. of Theoretics, Vol. 3, No. 1, 2001 37 De Matos, C., and Tajmar, M., " Gravitomagnetic Barnett Effect," Indian J. Phys., Vol . 75B, No. 5, 2001, pp. 459 - 461 38 Chiao, R., "Superconductors as Quantum Transducers and Antennas for Gravitational and Electromagnetic Radiation," arXiv: gr-qc/0204012, Apr. 2002 39 Harris, E., "Superconductors as Gravitational Wave Detectors," 69th Annual Meeting Southeastern Section, Am. Phys. Soc., No. NC.001, 2002 40 London, F., in : Superfluids, Vol 1, John Wiley & Sons, New York, 1950, pg . 78 4 1 Tate, J., Cabrera, B., Felch, 5., and Anderson, J., "Precise Determination of the Cooper-pair Mass, " Phys. Rev . Lett., Vol. 62, No. 8, 1989 pp. 845-848 42 Tajmar, M., and De Matos, C., "Gravitomagnetic Field of a Rotating Superconductor and of a Rotating Superfluid," Physica C, Vol. 385, 2003, pp. 551-554. 43 Reiss, H.D., Hathaway, G.D., "Minimum Experimental Standards in the Laboratory Search for Gravity Effects," Space Technologies and Applications International Forum 2005, El Genk, M.5. (ed .) American Institute of Physics Conference Proceedings, Melville, NY, 2005 44 Taj mar, M., Plesescu, F., Marhold, K., De Matos, C., "Experimental Detection of the Gravitomagnetic London Moment," arXiv: gr-qc/0603033, Mar. 2006 45 E. W. Davis, Institute for Advanced Studies, Austin, TX, private communication, 2007 46 Tajmar, M., Plesescu, F., Seifert, B., Schnitzer, R., and Vasiljevich, I., "Search for Frame-Dragging in the Vicinity of Spinning Superconductors" arXiv : abs/0707 .3806v7 47 M. Tajmar, Austrian Research Centres, Seibersdorf, Austria, private communication, 2008 48 http://www .newscientist.com/article/dn13938?feedid=online-news_ rss20 , accesses Jan 25, 2009 UNCLASSIFIED/ /FOR 8FFI@IAL YSI!! er•tv 12
Page 15born-digital extractionUNCLASSIFIED/ j'POlt Offl@IAL YSli &P•tlf As of this writing, there have been no further pronouncements from Podkletnov. No one has published a replication of his "gravity beam" experiment, and as time passes, more and more scientists are coming to the conclusion that the experiment was never actually performed. Concerns about experimental procedures are not confined to the fringe, either. Final analysis of the Gravity Probe B satellite data is also apparently in serious difficulty (Reference 48), adding weight to the conclusion that experimentation in this area is fraught with difficulty even for the most experienced researchers. Conclusion Although the payoff of the discovery of a superconductor-mediated interaction between matter and gravity would be tremendous, only a few researchers are pursuing this goal. The main reason for this is the adherence to dogma concerning the impossibility of increasing the matter/electromagnetic coupling coefficients. This adherence is reinforced by reputable physicists pointing out that the theoretical constructs presented so far are based on questionable foundations. As with any forays into the unknown, one has to accept a few bumps along the way, including sometimes going back to the starting point in order to start again. The likelihood of scientific ridicule is extremely high in the search for laboratory-scale gravitational interactions. Increased understanding of the nature of high-temperature superconductivity will be advantageous in setting the firm basis from which to proceed. True scientists will continue to speculate about the ideas considered above, whether outlandish or not. Experiments will continue until either funding runs out or theory proves unequivocally that the expected effects will be far too small to see; however, experimentalists must ensure that other researchers have complete information so they can replicate experiments. Theory will continue regardless, but theoreticians must ensure that the scientific foundations are correct, and experimentalists must remain wary of potential traps. 1 Gravitational Wave Conference: International High - Frequency Gravitational Waves (HFGW) Working Group, The Mitre Corporation, McLean, VA, May 2003 z Woods, R.C ., "Gravitational Waves and Superconductiv ity," Space Technologies and Applications International Forum 2005, El Genk, M.S. (ed .) American Institute of Physics Conference Proceedings, Melville, NY, 2005 3 Woods, R.C., " A Novel Variable Focus Lens for HFGW," Space Technologies and Applications International Forum 2006, El Genk, M.S. (ed .) American Institute of Physics Conference Proceedings, Melvi lle, NY, 2006 (4) Graham Rowe, Duncan : Cool colours, man, New Scientist, 21 April 2001 4 Puthoff, H.E., 'Gravity as a Zero-Point Fluctuation Force, " Physics Review A, Vol. 39, 1989, pp 2333 - 2342 5 Sakharov, A.O., Dokl. Akad . Nauk. SSSR (Sov. Phys. Docl.), Vol. 12, 1968, pp 1040 - 1041 6 Alzofon, F.E., " Anti-Gravity with Present Technology: Implementation and Theoretical Foundation," AIAA-81 - 1608, 17th AIAA/SAE/ASME Joint Propulsion Conference, Colorado Springs, CO, July, 1981 (7) " At a Crossroad, " Window Film, Volume 12, Issue 4 - July/August 2008 7 Hughes, W.L., "On Kopernicky's Conjecture: Gravity is a Difference Between Electrostatic Attraction and Repulsion," Galilean Electrodynamics, Vol. 15, No .5, 2004, pp 97 - 100 8 Braginski V.B., Caves C.M ., and Thorne K.S., "Laboratory Experiments to test Relativity Gravity" Physics Review D, Vol.ls, Nos, 1977, pp. 2047 - 2068 9 Hathaway, G.D., " Nightmares of the Art of Measuring," Space Technologies and Applications International Forum 2006, El Genk, M.S. (ed.) American Institute of Physics Conference Proceedings, Melville, NY, 2006 and http://earthtech .org/expe riment s/Hathaway Nightm are List. pdf, accessed Jan 20, 2009 1 °Forward, R. L., "General Relativity for the Experimentalist, " Proc. IRE, Vol. 49, 1961, pp . 892 -904. 11 Forward, R. L., "Guidelines to Antigravity," Am . J. Phys ., Vol. 31, 1963, pp . 166-170. iz Nordvedt, K. "Gravitomagnetic Interaction and Laser Ranging to Earth Satellites," Phys . Rev . Lett., Vol, 61, 1988, pp 2647 - 2649 13 Fairbank, J. D. et al. (eds.), Near Zero : New Frontiers of Physics, W. H. Freeman and Company, New York, 1988, Chap. VI. 14 http://www .geocities.com /Area51/Shadowlands/6583/project124 .html, accessed Jan 20, 2009 11 UNCLASSIFIED/ /FOR. Offl@IAL l::191: OHL¥
Page 16born-digital extractionUNCLASSIFIED/ /Pelt err1e1J1tt l!ISI!!! 8HL'I 15 Podkletnov, E. and Nieminen, R., "A Possibility of Gravitational Force Shielding by Bulk YBa2Cu3O7-x Superconductor," Physica C, Vol. 203, 1992, pp. 441-444 16 Li, N. and Torr, D. G., "Effects of a Gravitomagnetic Field on Pure Superconductors," Phys . Rev. D, Vol. 43, No. 2, 1991, pp. 457-459 17 Li, N. and Torr, D. G., "The Gravitoelectrodynamics of Superconductors: A Theoretical Basis for a Principle of Electrically Induced Gravitation," Bull. Am. Phys. Soc., Vol. 37, No. 2, 1992, Session G8 paper 10 18 Li, N. and Torr, D. G., "Gravitoelectric- Electric Coupling via Superconductivity," Found. Phys. Lett., Vol. 6, No. 4, 1993, pp. 371-383 19 Dewitt, B.S., "Superconductors and Gravitational Drag, " Physical Review Letters, Vol. 16, 1966, p. 1902 20 Ross, D.K., "The London Equation for Superconductors in a Gravitational Field," Journal of Physics A, Vol. 16, 1983, pp . 1331 - 1335 21 Prof. Pentti Kettunen, Tampere, Finland, private communication, 2007 22 Risto Nieminen, Tampere, Fin land, private communication, 2007 23 de Podesta, M., Bull, M., "Alternative Explanation of "Gravitational Screening" Experiments," Physica C, Vol. 253, 1995, pp 199-200 24 Prof. R. Gonnelli, Turin, Italy, private communicatio n, 1999 25 Woods, R. C., Cooke, S. G., Helme, J., and Caldwell, C. H., "Gravity Modification by High-Temperature Superconductors," AIAA-2001-3363, 37th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, Salt Lake City, UT, July 2001. 26 Kowitt, M., "Gravitomagnetism and Magnetic Permeability in Superconductors," Phys . Rev. B, Vol. 49, 1994, pp. 704-708 27 Harris, E. G., "Comments on 'Gravitoelectric-electric Coupling via Superconductivity'," Found. Phys. Lett ., Vol. 12, 1999, pg. 201 28 Podkletnov, E., "Weak Gravitationa l Shielding Properties of Composite Bulk YBCO Superconductor below 70K under EM Field" LANL cond-mat/9701074 v .3, 16 Sept 1997 29 Li, N., Noever, D., Robertson, T., Koczor, R., and Brantley, W., "Static Test for a Gravitational Force Coupled to Type II YBCO Superconductors," Physica C, Vol. 281, 1997, pp. 260-267 30 Noever, D., and Koczor, R., "Radio-freq uency Illuminated Superconductive Disks: Reverse Josephson Effects and Implications for Precise Measuring of Proposed Gravity Effects," NASA JPL 9th Advanced Space Propulsion Research Workshop & Conference, Pasadena, CA, 1998 31 Noever, D., Koczor, R., Roberson, R., "Superconductor-Mediated Modification of Gravity? AC Motor Experiments with Bulk YBCO Disks in Rotating Magnetic Fields," AIAA-98-3139, 34th AIAA/ASME/SAE/ASEE Joint Propulsion Conference, Cleveland, OH, July 1998 32 Reiss, H. D., "A Possible Interaction between Gravity and High Temperature Superconductivity - by a Materials Property?," 15th European Conference on Thermophysical Properties, Wuerzburg, Germany, Sept 1999 33 Reiss, H. D., "Weight Anomalies Observed during Cool-Down of High Temperature Superconductors," Phys . Essays, Vol. 16, 2003, pp. 236-253 34 Podkletnov, E. and Modanese, G., "Impulse Gravity Generator Based on Charged YBa2Cu3O7-y Superconductor with Composite Crystal Structure," arXiv : physics/0108005, Aug . 2001 35 Hathaway, G., Cleveland, B., and Bao, Y., "Gravity Modification Experiment using a Rotating Superconducting Disk and Rad io Frequency Fields," Physica C, Vol. 385, 2003, pp. 488-500 36 Tajmar, M., and De Matos, C., "Coup ling of Electromagnetism and Gravitation in the Weak Field Approximation," Jnl. of Theoretics, Vol. 3, No. 1, 2001 37 De Matos, C., and Tajmar, M., " Gravitomagnetic Barnett Effect," Indian J. Phys., Vol . 75B, No. 5, 2001, pp. 459 - 461 38 Chiao, R., "Superconductors as Quantum Transducers and Antennas for Gravitational and Electromagnetic Radiation," arXiv: gr-qc/0204012, Apr. 2002 39 Harris, E., "Superconductors as Gravitational Wave Detectors," 69th Annual Meeting Southeastern Section, Am. Phys. Soc., No. NC.001, 2002 40 London, F., in : Superfluids, Vol 1, John Wiley & Sons, New York, 1950, pg . 78 4 1 Tate, J., Cabrera, B., Felch, 5., and Anderson, J., "Precise Determination of the Cooper-pair Mass, " Phys. Rev . Lett., Vol. 62, No. 8, 1989 pp. 845-848 42 Tajmar, M., and De Matos, C., "Gravitomagnetic Field of a Rotating Superconductor and of a Rotating Superfluid," Physica C, Vol. 385, 2003, pp. 551-554. 43 Reiss, H.D., Hathaway, G.D., "Minimum Experimental Standards in the Laboratory Search for Gravity Effects," Space Technologies and Applications International Forum 2005, El Genk, M.5. (ed .) American Institute of Physics Conference Proceedings, Melville, NY, 2005 44 Taj mar, M., Plesescu, F., Marhold, K., De Matos, C., "Experimental Detection of the Gravitomagnetic London Moment," arXiv: gr-qc/0603033, Mar. 2006 45 E. W. Davis, Institute for Advanced Studies, Austin, TX, private communication, 2007 46 Tajmar, M., Plesescu, F., Seifert, B., Schnitzer, R., and Vasiljevich, I., "Search for Frame-Dragging in the Vicinity of Spinning Superconductors" arXiv : abs/0707 .3806v7 47 M. Tajmar, Austrian Research Centres, Seibersdorf, Austria, private communication, 2008 48 http://www .newscientist.com/article/dn13938?feedid=online-news_ rss20 , accesses Jan 25, 2009 UNCLASSIFIED/ /FOR 8FFI@IAL YSI!! er•tv 12