InAs/AlAsSb量子点中波段太阳能电池的漂移扩散模拟

Staffan D. Hellstroem, S. Hubbard
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引用次数: 1

摘要

我们提出了嵌入在AlAsSb中的InAs量子点的漂移扩散模拟,AlAsSb是实现中间带太阳能电池的有前途的候选系统,因为它具有接近理想的带隙,几乎是平坦的ii型价带线。采用8波段k.p法计算的吸收系数。结论是,目前最先进的InAs/AlAsSb量子点只能提供适度的效率提高,远远低于detail - balance理论的预测,而差异的主要原因来自于经常使用的波长无关吸收的理想化建模,该模型未能捕捉到吸收系数的不平衡。提出了改进性能的几种可能性。
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Drift-diffusion simulations of InAs/AlAsSb quantum dot intermediate-band solar cells
We present drift-diffusion simulations of InAs QDs embedded in AlAsSb, which is a promising candidate system for realizing intermediate band solar cells as it features bandgaps close to the ideal, a nearly flat type-II valence band lineup. Absorption coefficients calculated by the 8-band k.p method have been used, along with. It is concluded that state-of-art InAs/AlAsSb QDs can only provide modest efficiency increases far below what Detailed-Balance theory predicts, and that the major reason for the discrepancy comes from the idealized modeling of wavelength-independent absorption often used, which fail to capture imbalances in the absorption coefficient. A few possibilities for improving the performance are presented.
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