Optical Design Considerations for Thin Photonic Power Converters with Textured Back Reflector

N. Nouri, C. Valdivia, M. Beattie, J. Krich, K. Hinzer
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Abstract

Photonic power converters (PPC) convert narrow-band light into electricity via the photovoltaic effect. In this study, we discussed optical design considerations of thin InAlGaAs PPCs with integrated pyramidal nano-textured back reflectors (BRs) under 1310 nm illumination. Simulation results using the finite difference time domain method revealed that multiple combinations of design space parameters yield similar total absorptance at 1310 nm but with different absorptance spectra. A tolerance study performed using one optimized design showed that a 70 nm variation in device thickness shifted BR-induced resonances from constructive to destructive interference and a 50 nm variation of the height and base width of nano-pyramids dropped the absorptance by more than 25% (absolute). Among all simulated designs, those with overlapping resonances around the target wavelength that incorporated a thin-film antireflection coating were the least sensitive to variations in the illumination wavelength.
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具有纹理背反射器的薄光子功率转换器的光学设计考虑
光子功率转换器(PPC)通过光伏效应将窄带光转换成电能。在这项研究中,我们讨论了在1310 nm光照下集成锥形纳米纹理背反射器(BRs)的薄InAlGaAs PPCs的光学设计考虑。时域有限差分法仿真结果表明,设计空间参数的多种组合在1310 nm处产生相似的总吸光度,但吸光度不同。利用一种优化设计进行的容差研究表明,70 nm的器件厚度变化将br诱导的共振从建设性干涉转变为破坏性干涉,而50 nm的纳米金字塔的高度和基宽变化使吸光度下降超过25%(绝对)。在所有的模拟设计中,那些在目标波长周围有重叠共振并包含薄膜增透涂层的设计对照明波长的变化最不敏感。
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