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Scattering Control and Camouflage Through Metasurfaces

机译:通过超表面的散射控制和伪装

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摘要

In the last years, there has been a strong interest in the design of invisibility devices able to reduce significantly the scattering of an object in a desired frequencies range. In particular, mantle cloaking has proven that electromagnetic invisibility can be achieved using patterned surfaces, also known as metasurfaces. The aim of this contribution is to show that metasurfaces can be used also for camouflaging purposes, i.e., for designing devices able to make an object appearing as it were either larger or thinner or composed by a different material. As an example, we present the analytical formulation and the numerical results of a cylindrical object made of an electric conductor whose scattering is made equal to the one of a dielectric cylinder. Finally, the bandwidth limitations of this technique, as well as a potential solution to improve the frequency response of the camouflaging devices, are discussed.
机译:近年来,人们对能够显着减少物体在所需频率范围内的散射的隐形装置的设计产生了浓厚的兴趣。特别是,披风掩盖已经证明,使用带图案的表面(也称为超表面)可以实现电磁隐身。该贡献的目的是表明超颖表面也可用于伪装目的,即,用于设计能够使物体看起来更大或更薄或由不同材料构成的物体的装置。例如,我们给出了一个由电导体制成的圆柱物体的解析公式和数值结果,该导体的散射等于一个电介质圆柱体。最后,讨论了该技术的带宽限制以及改善伪装设备频率响应的潜在解决方案。

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