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Defense Intelligence Reference Document High-Frequency Gravitational Wave Communications

Defense Intelligence Agency · 57 pages · text from the file's own layer

This Defense Intelligence Reference Document was prepared by the Defense Intelligence Agency under its Advanced Aerospace Weapon System Applications (AAWSA) program, is dated 6 April 2010 and is part of a series of advanced technology reports produced in FY 2009. It reviews proposed laboratory generators and detectors of high-frequency gravitational waves for communications. It favors an infrared-excited molecules transmitter and the Li-Baker detector, estimating about 1.9 million bits per second over 7,000 km through the Earth. It also discusses timing standards and interplanetary navigation uses.

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Applications International Forum (STAIF-2007), edited by M. S. EI-Genk, American
Institute of Physics Conference Proceedings Vol. 880, Melville, NY, pp. 1083-1091.
Hou B., Xu G., Wong H.K., and Wen W.J. (2005), "Tuning of photonic bandgaps by a
field-induced structural change of fractal metamaterials," Optics Express 13 9149-
9154.
Ingley, R. M. J. (2005), "Implementation and Cross Correlation of Two High Frequency
Gravitational Wave Detectors," Ph.D. Thesis, The University of Birmingham, January.
Kippenberg, T. J. and Vahala, K. J. (2008), "Cavity Optomechanics: Back-Action at the
Mesoscale," Science 321, 1172-1176, August 29
Kleppner, D. (2008) Ref link: http://www.newscientist.com/article/mg2012694l.900-
su per-clocks-more-accurate-than-time-itself. htm I?fu 11 =true
Kolosnitsyn, N. I. and Rudenko, V. (2007), "Generation and Detection of the High
Frequency Gravitational Radiation in a Strong Magnetic Field," in the proceedings of the
HFGW2 Workshop, Institute of Advanced Studies at Austin (IASA), Texas, September
19-21; http ://earthtech.org/hfgw2/
Kraus. J. D. (1991), "Will gravity-wave communication be possible?" IEEE Antennas &
Propagation Magazine, Volume 33, Number 4, August.
Landau, L. D. and Lifshitz, E. M. (1975), The Classical Theory of Fields, Fourth Revised
English Edition, Pergamon Press, pp. 348,349, 355-357.
Li, F. Y., Tang M. and Zhao P. (1992), "Interaction Between Narrow Wave Beam-Type
High Frequency Gravitational Radiation and Electromagnetic Fields," Acta Physica Sinica
41 1919-1928
Li, F. Y. and Tang M.X. (1997), "Positive definite problem of energy density and
radiative energy flux for pulse cylindrical gravitational wave," Acta Physica Sinica 6
321-333.
Li, F. Y., Meng-Xi Tang, Jun Luo, and Yi-Chuan Li (2000) "Electrodynamical response of
a high energy photon flux to a gravitational wave," Physical Review D 62, July 21, pp.
044018-1 to 044018 -9.
Li, F. Y., Meng-Xi Tang, and Dong-Ping Shi, (2003), "Electromagnetic response of a
Gaussian beam to high-frequency relic gravitational waves in quintessential inflationary
models," Physical Review 867, pp. 104006-1 to -17.
Li, F. Y. and Nan Yang (2004), "Resonant Interaction between a Weak Gravitational
Wave and a Microwave Beam in the Double Polarized States Through a Static Magnetic
Field" Journal-ref:Chin. Phys. Lett. 21, No. 11, p. 2113.
Li, F. Y. and Li, Ruxin (2006), "Ultra-High-Intensity Lasers for Gravitational Wave
Generation and Detection," Space Technology and Applications International Forum
(STAIF-2006), edited by M. S. EI-Genk, American Institute of Physics Conference
Proceedings Vol. 813, Melville, NY, pp. 1249-1258.
41
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 57 pages are in the text index: search them above, or from the library's search.