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Defense Intelligence Reference Document Metamaterials For Aerospace Applications

Defense Intelligence Agency · 27 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 6 April 2010, reviews electromagnetic and optical metamaterials for aerospace use. It was produced in FY 2009 under the Advanced Aerospace Weapon System Applications (AAWSA) Program. The report covers super-lenses and hyper-lenses for imaging objects smaller than the diffraction limit, slowing light to shrink components, energy-harvesting absorbers, and one-way chiral devices. It concludes that metamaterials matter for aerospace because they allow smaller, lighter components.

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Figure 9. FSL Based on an Indefinite Permittivity Metamaterial Placed Between the Object and the
Image-Releasing Grating. The grating releases into the far field sub-diffraction waves produced by light
scattering off the object. The role of the metamaterfal fs to propagate sub-diffraction waves from object to grating.
(Reference 27)
Ever since Merlin's invention (Reference 28) of the sub-diffraction near-field plate, it
has become clear that the interference between sub-diffraction electromagnetic fields
can result in the formation of a deeply sub-wavelength image. The near-field plate,
however, is not an imaging device; its purpose is to create a well-defined image using
an elaborate pre-fabricated sub-wavelength structure on the plate's surface. The goal
for this study is to observe an a priori unknown sub-wavelength image using a near-
field structure. In the past, successes (Reference 19) in retrieving images of sub-
wavelength objects (such as A/20 holes) using an NSOM for radiation detection are
achieved. An NSOM is a near-field instrument, therefore, a much more desirable
detection method would involve far-field detection. To advance this goal, and to
develop a tool sometimes referred to as the FSL, we've initiated research on multi-
beam multi-detector sub-wavelength holography illustrated in Figure 10.
~ Detectors ~
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BeamA/// ~~eamB
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Figure 10. Tomographic Multi-Beam Multi-Detector Holography of Sub-Wavelength Objects Using .
Indefinite Permittivity Medium (IPM), Incident beam(s) scatter off the sub-,!., object, propagate through the
IPM, and then get re-scattered into the far field by the grating with the period D. The purpose of the multi-detector
arrangement is to disentangle the ki and k~ spatial wave numbers in the object's spectrum (shown In the left
panel). Beams A and Bare phase-shifted with respect to each other.
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 27 pages are in the text index: search them above, or from the library's search.