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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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theoretical prediction from GR was ignored by Einstein because of his belief in a static
universe.
Even though Einstein retracted the addition of A into his equations, it is now known that
it does indeed play a role and is typically included in GR equations. Data from precise
astronomical observations strongly suggest that an extremely small, yet non-zero A is a
necessary feature of GR and is responsible for the expansion of the universe that is
observed.
From a physical perspective, A represents an inherent energy density associated with
empty space. One way to envision this is to take a perfectly insulating box into deep
space, and then to remove all matter and all energy from this box so that it encloses a
perfect void. Even in this emptiness, a residual energy field would remain. According to
GR, the effect of this energy would be to cause the region of space to expand, albeit at
an extremely small rate. To summarize, A is a ubiquitous, ever present feature of
space, and its presence causes space to expand.
In the late 1990s it emerged that not only is the universe expanding, but the rate of
expansion is, in fact, increasing. Since then, it has become more popular to refer to A
as dark energy, and the remainder of this paper will follow this convention.
Although the role of dark energy is extremely well understood mathematically, and in
the context of its effects on spacetime, its physical nature is still a mystery. One knows
that it is homogeneous, not particularly dense, and that it does not interact with any of
the fundamental forces of nature. One also knows that it exerts negative pressure on
spacetime, which explains the observed accelerated expansion (Reference 15, 16). As
there is yet to be a reasonable explanation for the fundamental origin of dark energy,
the problem is considered serious and has been tackled by a large number of eminent
and respected physicists, including previous Nobel prize winners (Reference 17).
Because dark energy is intimately related to the expansion of space, and because this
expansion is exactly the feature that would allow for a warp drive to function, an
understanding of this mysterious energy is of paramount importance in the
development of this novel propulsion technology.
4. Casimir Energy and the Quantum Vacuum
A central theme in this paper is the notion of the quantum vacuum. To a particle
physicist, the term "vacuum" means the ground state of a quantum field in some
quantum theory for matter. In general, this ground state must obey Lorentz invariance,
at least with regards to three spatial dimensions, meaning that the vacuum must look
identical to all observers.
At all energies probed by experiments to date, the universe is accurately described as a
set of quantum fields. To a non-physicist a quantum field may, at first, be a strange
concept to grasp. This is because one generally likes to visualize the things one thinks
about; for example, an electron and even a photon provides something one can, on
some level, picture in one's minds. Simply put, a quantum field is an intangible
mathematical object whose properties are ideal in explaining nature. Theories have
reached such an advanced level that the familiar physical images that one appreciates
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