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Van Hove singularities in intersubband transitions in multiquantum well photodetectors

机译:多量子阱光电探测器中子带间跃迁的Van Hove奇异性

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Photocurrent spectra of quantum well infrared photodetector (QWIP) devices have been studied over more than three orders of magnitude, revealing features which have been largely overlooked before. Electric field assisted tunneling and, more surprisingly, Van Hove singularities at the miniband edges are shown to play an important role in the low and high energy parts of the QWIP photocurrent spectra, respectively. The photoresponse of QWIPs away from their peak responsivity is found to be non-negligible (> 1% in the 3-5 μm for a 8-12 μm detector), which has to be taken into consideration when optimizing multispectral devices.
机译:量子阱红外光电探测器(QWIP)器件的光电流谱已进行了超过三个数量级的研究,揭示了以前被大大忽略的特征。电场辅助隧穿以及更令人惊讶的是,微带边缘的Van Hove奇异性分别在QWIP光电流谱的低能和高能部分中起着重要作用。发现QWIP远离其峰值响应性的光响应是不可忽略的(对于8-12μm的检测器,在3-5μm中> 1%),在优化多光谱设备时必须考虑到这一点。

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