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Advanced Space Propulsion Based on Vacuum (Spacetime Metric) Engineering (entered by Rep. Burchett)

U.S. House Committee Repository · 17 pages · text from the file's own layer

This is an unclassified Defense Intelligence Reference Document (DIA-08-1003-015), dated 29 March 2010. The Defense Intelligence Agency prepared it under the Advanced Aerospace Weapon System Applications (AAWSA) Program, and Rep. Burchett entered it into the House committee record. The paper uses a general relativity metric tensor approach to look at how engineering spacetime might enable propulsion, including warp drives, apparent superluminal travel, reduced effective mass and antigravity. It finds these ideas consistent with physics but far beyond present engineering capability.

  • p. 2 …a series of advanced technology reports produced in FY 2009 under the Defense Intelligence Agency, (b…
  • p. 4 …the fore in advanced planning for long-range space exploration in the future is the concept…
  • p. 5 …Finally, the paper examines these effects as they would be exhibited in the presence of advanced…
  • p. 7 …for Section IV the significance of such effects within the context of advanced aerospace craft technologies…
  • p. 11 …by advanced technological means as might be anticipated in the development and deployment of advanced aerospace…
  • p. 12 …with an advanced aerospace craft in which ‘R >1, time flow within the altered spacetime region…
  • p. 13 UNCLASSIFIED/ craft's material properties would appear "hardened" relative to the environment owing to the increased…
  • p. 15 …before advanced spaceship technology based on vacuum engineering can be realized in practice. The difficulties, challenges…
  • p. 16 …Discussion This paper has considered the possibility—even likelihood—that future developments with regard to advanced…
  • p. 17 …a proper assessment of the possibilities inherent in the evolution of advanced spaceflight technologies. ' See, for…
UNCLASSIFIED
components of potential utility involve very-small-wavelength, high-frequency
field structures and thus resist facile engineering solutions. With regard to
perturbation of the spacetime metric, the required energy densities predicted
by present theory exceed by many orders of magnitude values achievable with
existing engineering techniques. Nonetheless, one can examine the
possibilities and implications under the expectation that as science and its
attendant derivative technologies mature, felicitous means may yet be found
that permit the exploitation of the enormous, as-yet-untapped potential of
engineering so-called "empty space," the vacuum.
This paper introduces the underlying mathematical platform for investigating
spacetime structure, the metric tensor approach. It then outlines the
attendant physical effects that derive from alterations in the spacetime
structure. Finally, the paper examines these effects as they would be exhibited
in the presence of advanced aerospace craft technologies based on spacetime
modification.
iv
UNCLASSIFIED

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