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Reconfigurable Metasurfaces for Frequency Selective Absorption

机译:用于频率选择性吸收的可重新配置的METASURFACE

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摘要

Metasurfaces can provide novel functionality for absorbing electromagnetic waves through a periodic array of inductive/capacitive resonators by controlling the material's permittivity and permeability. This attractive characteristic makes them widely applicable to various electromagnetic applications. However, conventional metasurfaces are dispersive and suffer from a narrow bandwidth with uncontrollable and unchangeable functions because the effective permittivity and permeability are tailored to a certain resonance frequency. Therefore, many studies have focused on how to increase the absorption frequency bandwidth and control the absorption frequency by using reconfigurable metasurfaces. This paper presents a report on the most recent progress in the realization of reconfigurable metasurfaces based on advanced materials for frequency-selective absorption in the microwave, millimeter-wave, sub-terahertz, terahertz, and visible ranges. Furthermore, their tuning ratios for different advanced materials and spectra are summarized and compared. This progress report provides guidelines for the material selection for and the design of reconfigurable metasurfaces.
机译:元件可以通过控制材料的介电常数和渗透率来提供用于通过周期性/电容谐振器吸收电磁波的新功能。这种有吸引力的特性使它们广泛适用于各种电磁应用。然而,传统的元件是分散的,并且具有不可控制和不可改进的功能的窄带宽,因为有效介电常数和渗透率被定制到某个共振频率。因此,许多研究专注于如何通过使用可重新配置的元件来增加吸收频率带宽并控制吸收频率。本文提出了关于实现基于微波,毫米波,亚太赫兹,太赫兹和可见范围内的频率选择性吸收的可重新配置性质措施的最新进展情况的报告。此外,总结了它们的调整比和分校的调整比率和比较。此进度报告提供了可重新配置的Metasurfaces的材料选择和设计的指导方针。

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