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InAs/InAsSb Strain-Balanced Superlattices for Longwave Infrared Detectors

机译:龙波红外探测器的INAS / INASSB应变 - 平衡超晶格

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摘要

The InAs/InAsSb type-II superlattices (T2SLs) grown on a GaSb buffer layer and GaAs substrates were theoretically investigated. Due to the stability at high operating temperatures, T2SLs could be used for detectors operating in the longwave infrared (LWIR) range for different sensors to include, e.g., CH4 and C2H6 detection, which is very relevant for health condition monitoring. The theoretical calculations were carried out by the 8 × 8 k·p method. The estimated electrons and heavy holes probability distribution in a InAs/InAsSb superlattice (SL) shows that the wave function overlap increases while the thickness of the SL period decreases. The change in the effective masses for electrons and holes versus the SL period thickness for the kz-direction of the Brillouin zone is shown. The structures with a period lower than 15 nm are more optimal for the construction of LWIR detectors based on InAs/InAsSb SLs. The experimental results of InAs/InAsSb T2SLs energy bandgap were found to be comparable with the theoretical one. The proper fitting of theoretically calculated and experimentally measured spectral response characteristics in terms of a strain-balanced and unbalanced structures is shown.
机译:在理论上研究了在GASB缓冲层和GAAs基材上生长的INAS / INASSB Type-II超晶格(T2SL)。由于高效温度的稳定性,T2SL可用于在龙波红外(LWIR)范围内操作的探测器,以包括不同传感器,例如CH4和C2H6检测,其与健康状况监测非常相关。理论计算通过8×8 k·p方法进行。 InAs / Inassb超晶格(S1)中的估计的电子和重型孔概率分布示出了波函数重叠在SL周期的厚度减小的同时增加。示出了电子和孔的有效质量的变化与布里渊区的KZ方向的SL周期厚度。具有低于15nm的周期的结构对于基于INAS / INASSB SLS的LWIR探测器的构建更加优化。发现INAS / INASSB T2SLS能量带隙的实验结果与理论上的一个相当。示出了根据应变平衡和不平衡结构的理论上计算和实验测量的光谱响应特性的适当拟合。

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