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首页> 外文期刊>Electron Device Letters, IEEE >Quantum-Dot-Based Mid-IR Single-Photon Detector With Self-Quenching and Self-Recovering Operation
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Quantum-Dot-Based Mid-IR Single-Photon Detector With Self-Quenching and Self-Recovering Operation

机译:具有自猝灭和自恢复操作的基于量子点的中红外单光子探测器

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A single-photon detector based on an avalanche quantum dot IR photodetector is presented and designed for self-quenching and self-recovering operation at IR wavelength. The device consists of dot layers and resonant tunneling barriers in the absorption region. An additional layer, called the transient carrier buffer, is added to trap the backward holes. For an avalanche process, the accumulation of backward-traveling-avalanche-generated holes leads to a reduction in the electric field of the multiplication region and avalanche gain, and consequently, the detector is quenched. The detector is self-recovered by thermionic emission and tunneling currents. We study the self-quenching and self-recovery performance of the device. A detection efficiency of around 8% is obtained.
机译:提出并设计了一种基于雪崩量子点红外光电探测器的单光子探测器,用于红外波长下的自猝灭和自恢复操作。该器件由吸收层中的点层和共振隧穿势垒组成。添加了称为瞬态载波缓冲器的附加层,以捕获反向空穴。对于雪崩过程,向后移动的雪崩产生的空穴的积累导致乘法区域的电场和雪崩增益的减小,因此检测器被淬火。检测器通过热电子发射和隧穿电流自恢复。我们研究了设备的自淬灭和自恢复性能。获得约8%的检测效率。

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