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首页> 外文期刊>Infrared physics and technology >Avalanche quantum dot-in-well long wavelength infrared photodetectors: Linear and Geiger mode operation
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Avalanche quantum dot-in-well long wavelength infrared photodetectors: Linear and Geiger mode operation

机译:雪崩量子点阱长波长红外光电探测器:线性和盖革模式

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摘要

Employment of additional multiplication region in the structure of quantum dots-in-well (DWELL) intersubband photodetectors can be a useful alternative for amplification of the photocurrent and giving higher gain to detected optical signal. For such detector the photocurrent of DWELL detector is increased by avalanche multiplication to achieve higher responsivity and resonant tunneling barriers are used in absorption region to reduce the dark current. In this paper the linear and Geiger mode operation of proposed detector is studied for operation at λ = 11 μm. In linear operation, the specific detectivity (D*) is increased about one order of magnitude in comparison to experimentally reported conventional DWELL detectors. We also report the single photon detection around mid and long infrared wavelength by gated mode operation of this detector with single photon quantum efficiency of about 3%.
机译:在阱中量子点(DWELL)子带间光电探测器的结构中采用额外的乘法区域可能是放大光电流并为检测到的光信号提供更高增益的有用替代方法。对于这种检测器,通过雪崩倍增来增加DWELL检测器的光电流以实现更高的响应度,并且在吸收区域中使用共振隧穿势垒来减小暗电流。在本文中,研究了所提出的检测器在λ= 11μm下的线性和Geiger模式操作。在线性操作中,与实验报告的常规DWELL检测器相比,比检测率(D *)提高了大约一个数量级。我们还报告了通过该探测器的门控模式操作在中长红外波长附近进行的单光子探测,其单光子量子效率约为3%。

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