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Limiting efficiencies of solar energy conversion and photo-detection via internal emission of hot electrons and hot holes in gold

机译:通过内部发射热电子和金中的热空穴来限制太阳能转换和光检测的效率

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We evaluate the limiting efficiency of full and partial solar spectrum harvesting via the process of internal photoemission in Au-semiconductor Schottky junctions. Our results based on the ab initio calculations of the electron density of states (e-DOS) reveal that the limiting efficiency of the full-spectrum Au converter based on hot electron injection is below 4%. This value is even lower than previously established limit based on the parabolic approximation of the Au electron energy bands. However, we predict limiting efficiency exceeding 10% for the hot holes collection through the Schottky junction between Au and p-type semiconductor. Furthermore, we demonstrate that such converters have more potential if used as a part of the hybrid system for harvesting high- and low-energy photons of the solar spectrum.
机译:我们通过在Au半导体肖特基结中的内部光发射过程来评估完整和部分太阳光谱收集的极限效率。我们基于状态电子密度从头算的计算结果表明,基于热电子注入的全谱Au转换器的极限效率低于4%。该值甚至低于先前基于Au电子能带的抛物线近似建立的极限。但是,我们预测通过Au和p型半导体之间的肖特基结收集的热空穴的极限效率将超过10%。此外,我们证明,如果将这种转换器用作混合系统的一部分,以收集太阳光谱的高能和低能光子,则它们具有更大的潜力。

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