Documents / Report
This Defense Intelligence Reference Document (DIA-08-1004-004), dated 6 April 2010, was produced by the Defense Intelligence Agency under its Advanced Aerospace Weapon System Applications (AAWSA) Program. It is one of a series of advanced technology reports from FY 2009. It reviews the general relativity physics of traversable wormholes and flat-faced "stargate" solutions for faster-than-light travel. It also covers the exotic negative energy these would need, proposed lab methods for generating it such as the Casimir effect and squeezed vacuum, and the constraints involved.
UNCLASSIFIED/ ,'P811. 8ffllil,t.l, 1,1lilii liUllolC [11] Hawking, S. W., and Ellis, G. F. R., The Large-Scale Structure of Space-Time, Cambridge Univ. Press, Cambridge, 1973, pp. 88-91, 95-96. [12] Epstein, H., Glaser, V., and Jaffe, A., "Nonpositivity of the Energy Density in Quantized Field Theories," Nuovo Cimento, Vol. 36, 1965, pp. 1016-1022. [13] Visser, M., "Wormholes, baby universes, and causality," Physical Review D, Vol. 41, 1990, pp. 1116-1124. [14] Visser, M., "Gravitational vacuum polarization. I. Energy conditions in the Hartle- Hawking vacuum," Physical Review D, Vol. 54, 1996, pp. 5103-5115. [15] Visser, M., "Gravitational vacuum polarization. II. Energy conditions in the Boulware vacuum," Physical Review D, Vol. 54, 1996, pp. 5116-5122. [16] Visser, M., "Gravitational vacuum polarization. III. Energy conditions in the (1+1)- dimensional Schwarzschild spacetime," Physical Review D, Vol. 54, 1996, pp. 5123- 5128. [17] Visser, M., "Gravitational vacuum polarization. IV. Energy conditions in the Unruh vacuum," Physical Review D, Vol. 56, 1997, pp. 936-952. [18] Barcelo, C., and Visser, M., "Twilight for the energy conditions?," International Journal of Modern Physics D, Vol. 11, 2002, pp. 1553-1560. [19] Herrmann, F., "Energy Density and Stress: A New Approach to Teaching Electromagnetism," American Journal of Physics, Vol. 57, 1989, pp. 707-714. [20] Drummond, P. D., and Ficek, Z. (eds.), Quantum Squeezing, Springer-Verlag, Berlin, 2004. [21] Hochberg, D., and Kephart, T. W., "Lorentzian wormholes from the gravitationally squeezed vacuum," Physics Letters B, Vol. 268, 1991, pp. 377-383. [22] DeWitt, B. S., "Quantum Field Theory in Curved Spacetime," Physics Reports, Vol. 19C, 1975, pp. 295-357. [23] DeWitt, B. S., "Quantum gravity: the new synthesis," General Relativity: An Einstein Centenary Survey, edited by S. W. Hawking and W. Israel, Cambridge Univ. Press, Cambridge, 1979, pp. 680-745. [24] DeWitt, B. S., "The Casimir Effect in Field Theory," Physics in the Making, Essays on Developments in 20th Century Physics, In Honour of H. B. G. Casimir, edited by A. Sarlemijn and J. Sparnaay, North-Holland Elsevier Science Publ., New York, 1989, pp. 247-272. [25] Birrell, N. D., and Davies, P. C. W., Quantum fields in curved space, Cambridge Univ. Press, Cambridge, 1984. [26] Saunders, S., and Brown, H. R. (eds.), The Philosophy of Vacuum, Clarendon Press, Oxford, 1991. 30 UNCLASSIFIED/ /FQA QFFiiiAk lilliilii 8111!!¥
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 42 pages are in the text index: search them above, or from the library's search.