Photonic crystal resonant cavity for thermophotovoltaic applications

C. Shemelya, T. Vandervelde
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引用次数: 3

Abstract

The ability to efficiently transform heat into a usable energy using thermophotovoltaics (TPV) has been a topic of research for many years. Due to recent micro fabrication advances, TPV and photonic crystals (PhC) has been the subject of renewed interest. In particular, PhC have been shown to increase the efficiency of photon to current conversions for infrared photodetectors. Here, Photonic crystals and a back reflecting plane have been employed to increase the efficiency of TPV cells by creating a resonant cavity. The result is an increased interaction time between photons and excitons leading to an increase in electron/hole pair generation. A simulated 2D photonic crystal consisting of Si3N4 rods in an ohmic contact material has demonstrated a possible 81% increase in absorption for a GaSb TPV cell.
热光伏应用的光子晶体谐振腔
利用热光伏(TPV)有效地将热量转化为可用能量的能力已成为多年来研究的主题。由于近年来微加工技术的进步,TPV和光子晶体(PhC)已成为人们重新关注的主题。特别是,PhC已被证明可以提高红外光电探测器的光子到电流转换效率。在这里,光子晶体和一个背面反射平面已经被用来提高TPV电池的效率,通过创建一个谐振腔。结果是光子和激子之间的相互作用时间增加,导致电子/空穴对的产生增加。在欧姆接触材料中模拟的由氮化硅棒组成的二维光子晶体表明,GaSb TPV电池的吸收可能增加81%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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