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Periodically multilayered planar optical concentrator for photovoltaic solar cells

机译:用于光伏太阳能电池的周期性多层平面聚光器

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摘要

A planar optical concentrator comprising a periodic multilayered isotropic dielectric material backed by a metallic surface-relief grating was theoretically examined for silicon photovoltaics. The concentrator was optimized using a differential evolution algorithm for solar-spectrum-integrated power-flux density. Further optimization was carried out for tolerance to variations in the incidence angle, spatial dimensions, and dielectric properties. The average electron-hole pair density in a silicon solar cell can be doubled, and the material costs substantially diminished by this concentrator, whose efficacy is due to the excitation of waveguide modes and multiple surface-plasmon-polariton waves in a broad spectral regime.
机译:从理论上研究了平面聚光器,该聚光器包含周期性的多层各向同性介电材料,该材料由金属表面浮雕光栅支撑,用于硅光伏。使用差分演化算法针对太阳光谱积分功率通量密度对聚光器进行了优化。进一步优化了入射角,空间尺寸和介电性能变化的容忍度。硅太阳能电池中的平均电子-空穴对密度可以加倍,并且该集中器可大大降低材料成本,其功效归因于在宽光谱范围内激发了波导模式和多个表面等离激元极化波。

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