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Strong terahertz response in quantum well photodetector based on intradonor transition by magnetic field

机译:基于磁场内给体跃迁的量子阱光电探测器中的强太赫兹响应

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We report on spectral investigation of photocurrent of a nonconventional GaAs/AlGaAs quantum well photodetector (QWP) which realizes a response to terahertz (THz) radiation by intradonor transitions (IDTs) in AlGaAs barriers rather than typical intersubband transitions (ISBTs) in GaAs wells. The photodetector shows dramatically enhanced photocurrent intensity and THz response when under a perpendicular magnetic field. This magnetic field helps to improve the absorption quantum efficiency, remove the restriction of the polarization selection rule, and extract high density electrons from two-dimensional electron gas in GaAs wells after electrons transfer into AlGaAs barriers. The effect of the magnetic field on the peak intensity and the linewidth of the photocurrent peak responses is exploited to distinguish IDT and ISBT and to identify the crucial role of electron transfer in THz detection in QWP. This work is useful for exploring detection strategy and technology for high responsivity THz photodetector.
机译:我们报告了一种非常规GaAs / AlGaAs量子阱光电探测器(QWP)的光电流的光谱研究,该探测器通过AlGaAs势垒中的供体内跃迁(IDT)而不是GaAs阱中的典型子带间跃迁(ISBT)实现对太赫兹(THz)辐射的响应。在垂直磁场下,光电探测器显示出显着增强的光电流强度和THz响应。该磁场有助于提高吸收量子效率,消除极化选择规则的限制,并在电子转移到AlGaAs势垒后,从GaAs阱中的二维电子气中提取高密度电子。利用磁场对峰值强度和光电流峰值响应的线宽的影响来区分IDT和ISBT,并确定电子传递在QWP的THz检测中的关键作用。这项工作对于探索高响应度太赫兹光电探测器的检测策略和技术很有用。

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