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Defense Intelligence Reference Document Aerospace Applications of Programmable Matter

Defense Intelligence Agency · 20 pages · text from the file's own layer

This Defense Intelligence Reference Document, prepared by the Defense Intelligence Agency under its Advanced Aerospace Weapon System Applications (AAWSA) Program and dated 14 December 2009, is a white paper on programmable matter and smart materials. It covers quantum dots, metamaterials, liquid crystals, dynamic windows and spacecraft thermal management, and describes a future space station scenario. It concludes that even partial realization could bring significant gains in spacecraft energy efficiency, safety and mission flexibility.

UNCLASSIFIED//5O9 OFFICIO I 1!55 ODIi Y
can exert precise control over their optical, electrical, thermal, and magnetic properties
rather than simply selecting these properties from the limited catalog nature has
provided.
Barrier
Barrier
Figure 2. Quantum Dot. A quantum dot confines electrons 1n a very small volume of space, forcing them to
behave as standing waves. Their structure thus resembles the electron clouds or "orbitals" of an atom.
Second, it is possible to pump electrons in and out of a quantum dot using electric
fields. Thus, instead of a single designer material, it is possible to create a
programmable material whose "atoms" can be changed on demand, allowing a bounded
but infinite variety of material properties that can be summoned or dismissed at will.
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Confined
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Barrier
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Harrier
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Figure 3. Programmable Materials. Various structures use electric fields to vary the confinement properties of
quantum dots and can be assembled into bulk materials.
PHOTONICS AND METAMATERIALS
"Sub-wavelength" features are objects implanted on or embedded in a transparent
material that are larger than atoms or molecules but smaller than a wavelength of light.
They can have significant effects on the optical properties of the material, since they
change the way it responds to electric and magnetic fields. However, because they are
too small to be "seen" by the photons interacting with them, they do not directly block
the passage of light. The result is a transparent material whose optical properties
3
UNCLASSIFIED/ /FOP OFFICIO I I 1S5 ADIi Y

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Report, from the dia collection. The PDF is mirrored here; the original link is above. 20 pages are in the text index: search them above, or from the library's search.