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Tuning of the detection wavelength in Quantum Dots-in-a-Well Infrared Photodetectors

机译:量子井中红外光电探测器中检测波长的调谐

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In this study, bias mediated tuning of the detection wavelength within the infrared wavelength region is demonstrated for quantum dots-in-a-well (DWELL) infrared photodetectors. In DWELL structures, intersubband transitions in the conduction band occur from a discrete state in the quantum dot to a subband in the quantum well. Compared to "conventional" quantum dot infrared photodetectors, where the transitions take place between different discrete bands in the quantum dots, new possibilities to tune the detection wavelength window are opened up, partly by varying the quantum dot energy levels and partly by adjusting the width and composition of the quantum well. In the DWELL structure used, an asymmetric positioning of the InAs quantum dot layer in a 8 ran wide In_(0.15)Ga_(0.85)As/GaAs QW has been applied which enables tuning of the peak detection wavelength within the long wavelength infrared (LWIR; 8-14 urn) region. When the applied bias was reversed, a wavelength shift from 8.5 to 9.5 μm was observed for the peak position in the spectral response. For another DWELL structure, with a well width of 2 nm, the tuning range of the detector could be shifted from the medium wavelength infrared (MWIR; 3-5 μm) region to the LWIR region. With small changes in the applied bias, the peak detection wavelength could be shifted from 5.1 to 8 μm. These tuning properties of DWELL structures could be essential for applications such as modulators and two-colour infrared detection.
机译:在该研究中,对于量子点 - 阱(停留)红外光电探测器,对红外波长区域内的检测波长的偏差调整的偏差调谐。在停留结构中,传导带中的运动轴转换从量子点中的离散状态发生到量子阱中的子带。与“常规”量子点红外光电探测器相比,在量子点中的不同离散区之间发生转变,部分调谐检测波长窗口的新可能性,部分地通过改变量子点能量水平,部分通过调节宽度来打开。和量子的组成。在所使用的停留结构中,已经应用了8次宽的IN_(0.15)GA_(0.85)AS / GaAs QW的INAS量子点层的不对称定位,其能够在长波长红外线内调谐峰值检测波长(LWIR ; 8-14瓮)地区。当逆转施加的偏压时,在光谱响应中观察到从8.5至9.5μm的波长移位。对于另一个停留结构,具有2nm的井宽,检测器的调谐范围可以从媒体波长红外(MWIR;3-5μm)区域转移到LWIR区域。随着施加的偏置的小变化,峰值检测波长可以从5.1到8μm移位。这些停顿结构的调整属性对于调制器和双色红外检测等应用可能是必不可少的。

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