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Polarization-Independent Ultra-Wideband Metamaterial Absorber for Solar Harvesting at Infrared Regime

机译:与偏振无关的超宽带超材料吸收体用于红外体制下的太阳能收集

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摘要

This paper presents an ultra-wideband metamaterial absorber for solar harvesting in the infrared regime (220–360 THz) of the solar spectrum. The proposed absorber consists of square-shaped copper patches of different sizes imposed on a GaAs (Gallium arsenide) substrate. The design and simulation of the unit cell are performed with finite integration technique (FIT)-based simulation software. Scattering parameters are retrieved during the simulation process. The constructed design offers absorbance above 90% within a 37.89% relative bandwidth and 99.99% absorption over a vast portion of the investigated frequency range. An equivalent circuit model is presented to endorse the validity of the proposed structure. The calculated result strongly agrees with the simulated result. Symmetrical construction of the proposed unit cell reports an angular insensitivity up to a 35° oblique incidence. Post-processed simulation data confirm that the design is polarization-insensitive.
机译:本文介绍了一种超宽带超材料吸收器,用于在太阳光谱的红外范围内(220–360 THz)收集太阳能。提出的吸收体由施加在GaAs(砷化镓)衬底上的不同大小的方形铜片组成。单元格的设计和仿真是使用基于有限积分技术(FIT)的仿真软件进行的。在仿真过程中会获取散射参数。所构建的设计在37.89%的相对带宽内提供90%以上的吸收率,并在所研究的频率范围的很大一部分内提供99.99%的吸收率。提出了等效电路模型以验证所提出结构的有效性。计算结果与模拟结果非常吻合。所提出的晶胞的对称构造报告了高达35°斜入射角不敏感。经过后处理的仿真数据证实了该设计对偏振不敏感。

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