Virtual hyperbolic metamaterials for manipulating radar signals in air
Microwave beam transmission and manipulation in the atmosphere is an important but difficult task. One of the major challenges in transmitting and routing microwaves in air is unavoidable divergence because of diffraction. Here we introduce and design virtual hyperbolic metamaterials (VHMMs) formed...
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Veröffentlicht in: | Nature communications 2013, Vol.4 (1), p.2557-2557, Article 2557 |
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Sprache: | eng |
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Zusammenfassung: | Microwave beam transmission and manipulation in the atmosphere is an important but difficult task. One of the major challenges in transmitting and routing microwaves in air is unavoidable divergence because of diffraction. Here we introduce and design virtual hyperbolic metamaterials (VHMMs) formed by an array of plasma channels in air as a result of self-focusing of an intense laser pulse, and show that such structure can be used to manipulate microwave beams in air. Hyperbolic, or indefinite, metamaterials are photonic structures that possess permittivity and/or permeability tensor elements of opposite sign with respect to one another along principal axes, resulting in a strong anisotropy. Our proof-of-concept results confirm that the proposed virtual hyperbolic metamaterial structure can be used for efficient beam collimation and for guiding radar signals around obstacles, opening a new paradigm for electromagnetic wave manipulation in air.
Controlling the propagation of microwaves in air is hard because of their divergence and the lack of suitable optics. Kudyshev
et al
. show how this can be overcome using plasma channels to create virtual hyperbolic metamaterials to collimate and guide radar beams. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/ncomms3557 |