2015International Applied Computational Electromagnetics Society Symposium - ItalyRequires access

Scattering control using metasurfaces for objects beyond the quasi-static limit

Zhi Hao Jiang, Douglas H. Werner

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Abstract

In this paper, we present a methodology for manipulating the scattering signature of an object using a single layer ultrathin metasurface. In contrast to previous work on metasurface cloaks where isotropic impedance surfaces have been considered, the metasurface coating considered here has both non-vanishing tangential and radial responses. As a result, its anisotropy can be engineered to tailor the scattering properties of a coated object with a moderate size beyond the quasi-static limit. As two proof-of-concept examples, near-perfect metasurface-based electromagnetic cloaking and illusion effects will be presented.

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What this paper is about

In this paper, we present a methodology for manipulating the scattering signature of an object using a single layer ultrathin metasurface. In contrast to previous work on metasurface cloaks where isotropic impedance surfaces have been considered, the metasurface coating considered here has both non-vanishing tangential and radial responses. As a result, its anisotropy can be engineered to tailor the scattering properties of a coated object with a moderate size beyond the quasi-static limit. As two proof-of-concept examples, near-perfect metasurface-based electromagnetic cloaking and illusion effects will be presented.

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Available abstract

In this paper, we present a methodology for manipulating the scattering signature of an object using a single layer ultrathin metasurface. In contrast to previous work on metasurface cloaks where isotropic impedance surfaces have been considered, the metasurface coating considered here has both non-vanishing tangential and radial responses. As a result, its anisotropy can be engineered to tailor the scattering properties of a coated object with a moderate size beyond the quasi-static limit. As two proof-of-concept examples, near-perfect metasurface-based electromagnetic cloaking and illusion effects will be presented.

Key concepts: Cloaking, Scattering, Limit (mathematics), Isotropy, Physics, Optics, Anisotropy, Metamaterial

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