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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.
“The Advance”7 pages
UNCLASSIFIED/ ;'Pel\ &I I ICIAL USE O14Jtf Deoxyribozyme-based Boolean Automata ............................................................ 39 Robotic Bases (The DNA Robot) ........................................................................... 40 DNA Nanomotors .................................................................................................. 41 The Nano Walker; a Spider-like Approach ............................................................ 43 Discussion ................................................................................................................ 45 Conclusion ................................................................................................................ 46 References ............................................................................................................... 48 Figures Figure 1. Hexagonal structure of graphene ..................................................................... 14 Figure 2. Quantum dot in graphene nanoribbon .............................................................. 15 Figure 3. Left; Energy diagram for quantum dot in single-layer graphene. Right; Bound state levels as function of dot radius ............................................................. 16 Figure 4. (a) Color scale plot of the transconductance. (b) One of the vertices of the honeycomb structure at Vsd = 800 μV: Charge stability diagrams for series- coupled quantum dots ...................................................................................... 16 Figure 5. Quantum dot in bilayer graphene ..................................................................... 17 Figure 6. Bilayer graphene tunneling device structure ................................................. 18 Figure 7. Qubit piano ........................................................................................................ 19 Figure 8. Long distance coupling of three graphene qubits ............................................ 19 Figure 9. A DNA nanomachine driven by repeated sequential addition of DNA control strands .............................................................................................................. 23 Figure 10. Recombinant DNA molecule with restriction enzyme cleavage and sticky end ligation ....................................................................................................... 25 Figure 11. Two symmetric DNA nanomotifs and the crystals grown using them .......... 26 Figure 12. (top a-e) The XOR Cellular Automaton and Its Implementation by Tile-Based Self-Assembly ............................................................................................. 27 Figure 12 (continued). (bottom a-e) AFM Images of Algorithmic Self-assembly of Sierpinski Triangle Crystals ........................................................................... 28 Figure 13. Error Suppression with the PTM Method ........................................................ 30 Figure 14. Simulation results of growth in (A) the OTM, (B) the PTM, and (C) the LTM.30 Figure 15. Three Types of Error in DNA Tile Self-assembly (a) Growth error (b) Facet error (c) Nucleation error. Red lines indicate the mismatched sides .......... 31 Figure 16. Micro-fluidic device for DNA tile self-assembly ............................................ 32 Figure 17. (A) Schematic diagram of a 16-column microfluidic DNA synthesizer (B) Close up schematic of the column array ............................................... 33 Figure 18. Design of DNA origami ................................................................................ 34 Figure 19. Several DNA origami folding paths .............................................................. 34 Figure 20. Functional design of a DNA based logic gate ............................................... 37 Figure 21. Simplistic rendering of a DNA logic gate ...................................................... 38 Figure 22. Basic gate structures, derived from allosterically regulated deoxyribozyme E6, for playing tic-tac-toe against a human opponent ................................ 39 Figure 23. First Generation (MAYA I) DNA-based Logic Circuit that plays tic-tac-toe ... 40 Figure 24. A single molecule DNA-based nanomotor driven by photons ....................... 42 Figure 25. AFM Scan of walkers as they follow a track pattern places on the surface .. 43 3 UNCLASSIFIED/ /FOP QCCJCJ0I 11S5 ADIi X
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 54 pages are in the text index: search them above, or from the library's search.