首页> 美国卫生研究院文献>Nanoscale Research Letters >Interface Intermixing in Type II InAs/GaInAsSb Quantum Wells Designed for Active Regions of Mid-Infrared-Emitting Interband Cascade Lasers
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Interface Intermixing in Type II InAs/GaInAsSb Quantum Wells Designed for Active Regions of Mid-Infrared-Emitting Interband Cascade Lasers

机译:II型InAs / GaInAsSb量子阱中的界面混合设计用于中红外发射带间级联激光器的有源区域

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摘要

The effect of interface intermixing in W-design GaSb/AlSb/InAs/Ga0.665In0.335AsxSb1 − x/InAs/AlSb/GaSb quantum wells (QWs) has been investigated by means of optical spectroscopy supported by structural data and by band structure calculations. The fundamental optical transition has been detected at room temperature through photoluminescence and photoreflectance measurements and appeared to be blueshifted with increasing As content of the GaInAsSb layer, in contrast to the energy-gap-driven shifts calculated for an ideally rectangular QW profile. The arsenic incorporation into the hole-confining layer affects the material and optical structure also altering the InAs/GaInAsSb interfaces and their degree of intermixing. Based on the analysis of cross-sectional transmission electron microscopy images and energy-dispersive X-ray spectroscopy, we could deduce the composition distribution across the QW layers and hence simulate more realistic confinement potential profiles. For such smoothed interfaces that indicate As-enhanced intermixing, the energy level calculations have been able to reproduce the experimentally obtained trend.
机译:通过结构数据和能带结构计算支持的光谱学研究了W-设计GaSb / AlSb / InAs / Ga0.665In0.335AsxSb1-x / InAs / AlSb / GaSb量子阱(QW)中界面混合的影响。通过在室温下通过光致发光和光反射测量可以检测到基本的光学跃迁,并且与为理想的矩形QW轮廓计算的能隙驱动的跃迁相反,随着GaInAsSb层中As含量的增加,其基本发生了蓝移。砷掺入空穴限制层会影响材料和光学结构,还会改变InAs / GaInAsSb界面及其混合程度。基于对横截面透射电子显微镜图像和能量色散X射线光谱学的分析,我们可以推导出QW层上的成分分布,从而模拟更现实的约束势能曲线。对于这种表示增强混合的平滑界面,能级计算已能够再现实验获得的趋势。

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