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Plasmonic Metasurface Absorber Based on Electro-Optic Substrate for Energy Harvesting

机译:基于电光衬底的等离子体元表面吸收器,用于能量收集

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摘要

A highly efficient and broad light absorber capable of wide-angle absorption in the visible and near infrared range is presented and numerically investigated for energy harvesting in a simple geometry. According to the calculated results, the proposed device has a peak absorption level of about 99.95%. The actual absorption efficiency is 76.35%, which is approaching that of complex multilayer absorbers with 88 layers working in the wavelength range of 300 nm to 2000 nm. The electro-optic material has the potential of shifting the absorption peak position, compensating fabrication errors and thus reducing the fabrication technique difficulties. Also, the high electro-optic tunability can be used for filters, infrared detection, and imaging applications. More directly, the proposed absorber can be potentially deployed in solar cells and solar thermals.
机译:在可见和近红外范围内能够在可见和近红外范围内具有高效且宽的光吸收器,并在数值上研究了简单的几何形状中的能量收获。根据计算结果,所提出的装置的峰值吸收水平约为99.95%。实际吸收效率为76.35%,即在波长范围为300nm至2000nm的波长范围内使用88层的复杂多层吸收剂接近。电光材料具有移动吸收峰位置,补偿制造误差并因此降低制造技术困难的可能性。此外,高电光可调性可用于过滤器,红外检测和成像应用。更直接地,所提出的吸收器可以潜在地部署在太阳能电池和太阳能热量中。

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