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Quantum-Well Solar Cells for Space: The Impact of Carrier Removal on End-of-Life Device Performance

机译:用于太空的量子阱太阳能电池:载流子去除对报废设备性能的影响

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摘要

In this paper, a detailed analysis on the radiation response of solar cells with multi quantum wells (MQW) included in the quasi-intrinsic region between the emitter and the base layer is presented. While the primary source of radiation damage of photovoltaic devices is minority carrier lifetime reduction, we found that in the case of MQW devices, carrier removal (CR) effects are also observed. Experimental measurements and numerical simulations reveal that with increasing radiation dose, CR can cause the initially quasi-intrinsic background doping of the MQW region to become specifically n- or p-type. This can result in a significant narrowing and even the collapse of the electric field between the emitter and the base where the MQWs are located. The implications of the CR-induced modification of the electric field on the current-voltage characteristics and on the collection efficiency of carriers generated within the emitter, the MQW region, and the base are discussed for different radiation dose conditions. This paper concludes with a discussion of improved radiation hard MQW device designs.
机译:本文对发射极和基极层之间的准本征区中包含的多量子阱(MQW)太阳能电池的辐射响应进行了详细分析。虽然光伏设备的辐射损伤的主要来源是少数载流子寿命的减少,但我们发现在MQW器件的情况下,也观察到了载流子去除(CR)效应。实验测量和数值模拟表明,随着辐射剂量的增加,CR可能导致MQW区域的初始准本征背景掺杂变成特定的n型或p型。这可能导致发射极和MQW所在的基极之间的电场明显变窄甚至崩溃。对于不同的辐射剂量条件,讨论了CR诱导的电场修改对电流-电压特性以及在发射极,MQW区域和基极内生成的载流子的收集效率的影响。本文最后讨论了改进的辐射硬MQW器件设计。

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