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Defense Intelligence Reference Document Warp Drive Dark Energy And The Manipulation Of Extra Dimensions

Defense Intelligence Agency · 33 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency is dated 2 April 2010 and was produced under the Advanced Aerospace Weapon System Applications (AAWSA) Program. It is one of a series of advanced technology reports from FY 2009. It reviews general relativistic warp drives, the cosmological constant, Casimir energy and extra space dimensions. It proposes that dark energy may come from higher dimensions and that controlling those dimensions could one day make a warp drive possible.

  • p. 2 …in FY 2009 Advanced Aerospace uestions pertaining to , AAWSA Program under the Defense Intelligence Agency, (b…
  • p. 5 …An advanced aerospace platform incorporating warp drive technology would profoundly alter the capacity to explore-and…
  • p. 7 …This work has clear implications for the advancement of warp drive research. This paper is structured…
  • p. 11 …a reasonable assumption at the time because observational astronomy had not advanced to a level that…
  • p. 12 …Theories have reached such an advanced level that the familiar physical images that one appreciates 5…
  • p. 15 …the Einstein-Schrodinger non-symmetric field theory, which is widely regarded as the most advanced unified…
  • p. 19 …will emerge regarding the potential role extra dimensions could play in advanced technologies (which will be…
  • p. 22 …A sufficiently advanced technology with the capacity to directly interact with and manipulate an extra dimension…
  • p. 27 …that a sufficiently advanced technology with the ability to adjust the radius of the extra dimension…
  • p. 29 …As discussed earlier, this is a "worst case" scenario, and the energy requirements could be further…
  • p. 31 …Summary The idea that a sufficiently advanced technology may interact with, and acquire direct control over…
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false minima would be artificially created via the adjustment of the extra dimension
(see Figure 8). These modified regions would correspond to increased and negative
dark energy densities, thus creating the warp bubble previously discussed.
7.4 ELEMENTARY WARP DRIVE CALCULATIONS
This section will explore the calculations relevant to propulsion. Specifically, it will
determine the energy required to accelerate a spacecraft to the speed of light. By
associating the cosmological constant with the higher dimensional Casimir energy, a
straightforward relation between A and the radius of the extra dimensions can be
determined:
(7.1)
A simpler way of developing the relationship between the energy density of space and
the expansion of space is to express A as a function of Hubble's constant, H:
Hoc ✓A, (7.2)
which is a standard result obtained from GR. From these two formula, a relationship
between the expansion of space and the radius of the extra dimension can be shown:
(7.3)
This formula really expresses the foundation of this novel warp drive concept: that a
sufficiently advanced technology with the ability to adjust the radius of the extra
dimension locally would be able to locally adjust the expansion and contraction of
spacetime around a spacecraft. This asymmetric expansion creates the warp bubble
illustrated in Figure 1. The spacecraft would always move within its own light cone and
thus would not contradict any law of special relativity. The possibility that the higher
dimensional radius might vary from place to place has been explored in the context of
string theory (Reference 57), and so is a valid academic pursuit. However, it has never
before been suggested that this might facilitate a new and exotic form of propulsion.
Equations (7.1) and (7.2) used together express a relationship between the expansion
of space and the energy density of space. A sufficient increase in the energy density of
space would generate a proportional increase in the expansion of space. Thus calculate
the energy density of space that would be necessary to generate a local expansion of
space at the speed of light. A local expansion at the speed of light, Hubble's constant
must be increased by a factor of:
(7.4)
where H, represents the modified Hubble's constant, and the subscript c indicates that it
is the Hubble's constant for the case of light speed expansion. H must be increased by
a factor of 10 26 to achieve a local expansion of space equivalent to the speed of light.
20
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 33 pages are in the text index: search them above, or from the library's search.