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Defense Intelligence Reference Document Invisibilty Cloaking Theory And Experiments

Defense Intelligence Agency · 29 pages · text from the file's own layer

This Defense Intelligence Reference Document, dated 2 March 2010 and produced by the Defense Intelligence Agency under its Advanced Aerospace Weapon System Applications (AAWSA) Program, is a technical survey of invisibility. It covers camouflage, including stealth aircraft and optical camouflage, then transparency, cloaking by coordinate transformation, metamaterials and non-Euclidean broadband cloaking. It concludes that perfect cloaking is impossible but imperfect microwave cloaks are within reach of present technology. Whether cloaking will work at visible wavelengths remains unclear.

  • p. 2 …a series of advanced technology reports produced in FY 2009 under the Defense Intelligence Agency, l…
  • p. 4 …Implementation of the Ground-Plate Cloak ......................................... 21 iv UNCLASSIFIED/;CEiOAt OFFI&l11J.k WliEii IU.blif
  • p. 8 …In these cases, the atoms or molecules advance the wave fronts of light because they are…
  • p. 9 …9PPl!ltllt t!l91!! 9HLY direction from the propagation. The clearest and most advanced form of…
  • p. 13 …Light waves would advance around the hidden core of the device, engulfing it, as Figure 10…
  • p. 15 …The colored curves show how the electromagnetic functions change over the distance from the center of…
  • p. 18 …Figure 14. Advances in Metamaterials. The solid symbols denote materials with negative refraction; the open symbols…
  • p. 27 …The technology for cloaking will depend on the design of such advanced cloaking devices. Probably they…
  • p. 28 …Most probably, this will depend more on the new theoretical research than on advances in new…
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refractive materials than for the meta materials of cloaking devices. So the graph
indicates the possible progress toward optical cloaking.
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Figure 14. Advances in Metamaterials. The solid symbols denote materials with negative refraction; the open
symbols denote optical materials with negative magnetic response. Orange: data from structures based on the
double split-ring resonator (SRR); green: data from U-shaped SRRs; blue: data from pairs of metallic nanorods;
red: data from the "fishnet" structure. The four insets give pictures of fabricated structures in different frequency
regions. 22
On the other hand, cloaking devices require bulk metamaterials with varying cell
structures. The first moderately bulk negatively refracting materials23, 24 were made
only recently.
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The most severe practical problem of the currently discussed cloaking devices is not the
technology for manufacturing and structuring the required metamaterials but a problem
at the core of their principal design. 25
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 29 pages are in the text index: search them above, or from the library's search.