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Exchanging Ohmic Losses in Metamaterial Absorbers with Useful Optical Absorption for Photovoltaics

机译:用对光电有用的光吸收交换超材料吸收体的欧姆损耗

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Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily constitute undesired resistive heating problem for photovoltaics. Tailoring the geometric skin depth of metals and employing the natural bulk absorbance characteristics of the semiconductors in those absorbers can enable the exchange of undesired resistive losses with the useful optical absorbance in the active semiconductors. Thus, Ohmic loss dominated metamaterial absorbers can be converted into photovoltaic near-perfect absorbers with the advantage of harvesting the full potential of light management offered by the metamaterial absorbers. Based on experimental permittivity data for indium gallium nitride, we have shown that between 75%–95% absorbance can be achieved in the semiconductor layers of the converted metamaterial absorbers. Besides other metamaterial and plasmonic devices, our results may also apply to photodectors and other metal or semiconductor based optical devices where resistive losses and power consumption are important pertaining to the device performance.
机译:使用超材料吸收器,我们已经表明吸收器中的金属层不一定会构成光伏的不希望的电阻加热问题。调整金属的几何趋肤深度并在那些吸收器中利用半导体的自然本体吸收率特性,可以使不希望的电阻损耗与活性半导体中的有用光学吸收率交换。因此,以欧姆损耗为主导的超材料吸收器可以转换为光伏近乎完美的吸收器,其优点是可以充分利用超材料吸收器提供的光管理潜力。根据氮化铟镓的实验介电常数数据,我们表明,转化后的超材料吸收体的半导体层可以实现75%–95%的吸收率。除了其他超材料和等离激元器件,我们的结果也可能适用于电阻器和功耗与器件性能相关的光电探测器和其他基于金属或半导体的光学器件。

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