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Defense Intelligence Reference Document Advanced Nuclear Propulsion For Manned Deep Space Missions

Defense Intelligence Agency · 37 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 11 March 2010, was produced under the Advanced Aerospace Weapon System Applications (AAWSA) Program. It argues that spaceships powered by deuterium thermonuclear reactions could be built with current science and technology. The paper covers ignition by GeV proton beams, magnetic insulation, the Super Marx generator and conjectured chemical superexplosives, and it concludes that such craft could make manned exploration of the entire solar system possible.

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potential equal to V requires an electron number density n;:::: V / JTRR 2 . For V = 109 volts
:::: 3x 106 esu and R = 103cm, one finds that n ~ 2x 109 cm- 3 , well below nmax.
Deuterium as the Preferred Nuclear Rocket Fuel
To appreciate the importance of deuterium as the preferred and abundantly available
nuclear rocket fuel, one must consider the secondary reactions with D of the He 3 and T
reaction products from D-D fusion. Taking these reactions into account, one obtains
from 6 deuterium nuclei an energy of 26.8 megaelectronvolts (MeV) in charged fusion
products, made up of He3 and H, and an energy of 16.55 MeV in neutrons. This means
62 percent of the energy is released into charged fusion products and 38 percent into
neutrons-a substantial improvement over the DT reaction, in which only 20 percent of
the energy goes into He4 .
Of interest also is the average velocity, averaged over the momentum of the charged
fusion products, because it is a measure of the maximum specific impulse, respectively
the maximum exhaust velocity:
For the six charged fusion reaction products (given in Table 1), one obtains v =
l.Sx109 cm/s.
(7)
Table 1. The Charged Fusion Products of a Detonation in Deuterium: Their
Energy and Velocity
Fusion Product Energy [MeV[ Velocity 10' [cm/s[
He-' 0.8 1.23
H 3.0 2.40
H 14.7 5.30
He" 3.6 1.31
He" 3.7 1.33
T LO 0.80
5
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 37 pages are in the text index: search them above, or from the library's search.