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Temperature controlled infrared broadband cloaking with the bilayer coatings of semiconductor and superconductor

机译:半导体和超导体双层涂层的温控红外宽带隐身衣

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摘要

The infrared broadband tunable cloaking have been proposed and investigated with the bilayer coating materials of semiconductor (n-Ge) and high-temperature superconductor (YBa2Cu3O7), whose cloaking frequency can be controlled by external temperature. The analytical solution is derived based on the scattering cancellation cloaking technique from the Mie scattering theory, and the full-wave numerical simulation is performed by the finite element method. The calculated and simulated results have demonstrated that this invisibility cloak may reduce the total scattering cross section of the composite structure of 90% over a broad frequency band of nearly 20 THz, and the infrared cloaking frequency can be tuned by the external temperature. It can provide a feasible way to design a broadband tunable cloak. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了红外宽带可调谐隐身技术,并采用半导体(n-Ge)和高温超导体(YBa2Cu3O7)的双层涂层材料进行研究,隐身频率可通过外部温度控制。基于Mie散射理论,基于散射抵消隐身技术得出了解析解,并通过有限元方法进行了全波数值模拟。计算和模拟结果表明,这种隐形斗篷可以在近20 THz的宽频带上将复合结构的总散射截面减小90%,并且可以通过外部温度来调节红外隐形斗篷的频率。它可以提供一种设计宽带可调式披风的可行方法。 (C)2015 Elsevier B.V.保留所有权利。

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