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基于多层金属-电介质结构的广角、偏振不敏感和宽带超材料吸波器。

Wide-angle, polarization-insensitive, and broadband metamaterial absorber based on multilayered metal-dielectric structures.

作者信息

Liu Pinwei, Lan Tian

出版信息

Appl Opt. 2017 May 10;56(14):4201-4205. doi: 10.1364/AO.56.004201.

Abstract

A wide-angle, polarization-insensitive, and broadband metamaterial absorber (MA) based on multilayered metal-dielectric structures was designed and investigated using the finite-difference time-domain solution. The device exhibited polarization-insensitive absorption in the 475-592 nm range, with the absorption higher than 95%. At the same time, the broadband absorption was nearly unaffected for incident angles below 50°. To understand this absorption mechanism of this broadband MA, we investigated the magnetic field distributions at the resonance wavelength. Different metallic layers yielded different resonant wavelengths, leading to the observed high absorption in the broadband spectrum. For broadband MAs, the absorption spectrum can be expanded by adjusting structural parameters.

摘要

基于多层金属-电介质结构设计并利用时域有限差分法求解研究了一种广角、偏振不敏感且宽带的超材料吸收体(MA)。该器件在475 - 592 nm范围内表现出偏振不敏感吸收,吸收率高于95%。同时,对于入射角低于50°的情况,宽带吸收几乎不受影响。为了理解这种宽带MA的吸收机制,我们研究了共振波长处的磁场分布。不同的金属层产生不同的共振波长,从而导致在宽带光谱中观察到高吸收。对于宽带MA,可以通过调整结构参数来扩展吸收光谱。

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