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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Redshifting and broadening of quantum-well infrared photodetector's response via impurity-free vacancy disordering
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Redshifting and broadening of quantum-well infrared photodetector's response via impurity-free vacancy disordering

机译:无杂质空位无序现象导致量子阱红外光电探测器响应的红移和展宽

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摘要

The partial intermixing of the well and barrier materials offers unique opportunities to shift locally the bandgap of quantum-well (QW) structures. We have demonstrated redshifting and broadening of the wavelength responses of bound-to-continuum GaAs and InP based quantum-well infrared photodetectors (QWIP's) after growth via impurity-free vacancy disordering (IFVD). A comprehensive set of experiments is conducted on QWIP's fabricated from both as-grown and multiple-quantum-well (MQW) structures. Compared to the as-grown detector, the peak spectral responses of the disordered detectors were shifted to longer wavelengths. The peak absolute response of the disordered GaAs based QWIP is lower by almost a factor of four. However, the responsivity characteristics of the disordered InP based QWIP show no major degradation. In general, with the spectral broadening taken into account, the overall performance of the disordered QWIP's has not dropped significantly. Thus, the postgrowth control of the QW composition profiles by impurity-free vacancy disordering offers unique opportunities to fine tune various aspects of a photodetector's response. Theoretical calculations of the absorption coefficient spectrum are in excellent agreement with the experimental data.
机译:阱和势垒材料的部分混合提供了独特的机会来局部移动量子阱(QW)结构的带隙。我们已经证明了通过无杂质空位无序(IFVD)生长后,结合于连续谱的砷化镓和基于InP的量子阱红外光电探测器(QWIP)的波长响应会发生红移和展宽。在由生长态和多量子阱(MQW)结构制造的QWIP上进行了一套全面的实验。与生长中的检测器相比,无序检测器的峰值光谱响应转移到了更长的波长。基于无序GaAs的QWIP的峰值绝对响应几乎降低了四倍。但是,无序的基于InP的QWIP的响应特性没有显示出严重的下降。通常,考虑到频谱扩展,无序QWIP的整体性能并未显着下降。因此,通过无杂质空位无序对QW成分分布图的生长后控制提供了微调光电探测器响应各个方面的独特机会。吸收系数谱的理论计算与实验数据非常吻合。

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