Documents / Report

Defense Intelligence Reference Document Quantum Computing And Utilizing Organic Molecules In Automation Technology

Defense Intelligence Agency · 54 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 10 December 2010, is one of a series of advanced technology reports produced in FY 2010 under the Advanced Aerospace Weapon System Applications (AAWSA) Program. It reviews quantum computing technologies and DNA-based molecular computing for onboard supercomputing on future spacecraft. It forecasts ion-trap quantum computers within 10 years, simple DNA tile computing within 20 years, and self-repairing DNA computers on a 40-year horizon.

  • p. 6 …On the 40-year time horizon, useful DNA-based devices will be essential space exploration tools…
  • p. 9 …The current approach is to make the solid state components radiation-hard, a time-consuming and…
  • p. 10 …Smaller circuit elements decreased the settling time of transistors and thus gates on CPUs, allowing increasing…
  • p. 11 …The strength of this technique is that traditional computer algorithms will take a long time to…
  • p. 12 …These three time constants that describe the internal signal decays are very similar to the same…
  • p. 13 …computation time, decoherence time, physical space, or required power). The exact nature of the required engineering…
  • p. 19 …five times faster than in GaAs quantum dots using the same field strength of the external…
  • p. 21 …and the spin-flip relaxation time is inversely proportional to the elastic scattering time. The spin…
  • p. 22 …time scale still remain a challenge. A proposed new configuration of two-spin encoding of the…
  • p. 23 …time in other quantum hardware.n The size of quantum gates is currently on the order…
  • p. 24 …The components of superconducting circuits can be fabricated with current technology; however, decoherence times are limited…
  • p. 30 …been proposed based on the idea of increasing the amount of time required to lock in…
  • p. 34 …For the first time, we are now capable of self-assembling structures whose size and complexity…
  • p. 47 …On the 40-year time horizon, useful DNA-based devices will be essential space exploration tools…
UNCLASSIFIED/ /F811. 8Ffllil,t,b l!l!i! &,lb¥
the complementary binding of the Watson-Crick base pairs that correspond to each sticky
end. In this way, a lattice structure can be built upon the base structure by synthesizing
additional DX motifs to construct what is known as a "DNA tile." These tiles can be further
utilized as a scaffold for additional molecular structures.
In order to envision the aTAM tiling process, it is easy to picture various tiles with different
numbers written on the sides, indicating matching rules where two tiles would stick only if
their contacts matched. Additional matching interactions can be arranged in a manner that
adjacent tiles can strongly hold the next one in place, but a single interaction creates a weak
bond. Figure 12 illustrates an instantiation of the algorithmic self assembly process, in which
sets of four species tiles that represents XOR (exclusive OR) function to create a Sierpinski
triangle pattern. The so called seed structure is used to input the initial values that
commence the algorithmic self assembly process. However, it must be noted that random
nucleation events may occur. Nevertheless, algorithmic self-assembly has created a means
to emulate cellular automata.
27
A I = 1
I= I
I = 0
I I I I I I
B CJ
X I y
C !IC'""'"""""":)l Oc------"_:1 l~l I~
-~· a..._____s ,l...:.:'.'.:..s ~.
0 0 I l'i/ 11
1__!~;
□-
E-
Figure 12. (top a-e) The XOR Cellular Automaton and Its Implementation by Tile-Based Self-Assembly.
(bottom a-e) AFM Images of Algorithmic Self-assembly of Sierpinski Triangle Crystals.
UNCLASSIFIED/ /F81t 8FFU!IJIIL 1!19! 8HL I

Not linked to a story yet.

About this file

Report, from the dia collection. The PDF is mirrored here; the original link is under it. 54 pages are in the text index: search them above, or from the library's search.