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基于单纳米线的室温单光子探测器

Room-Temperature Single-Photon Detector Based on Single Nanowire.

作者信息

Luo Wenjin, Weng Qianchun, Long Mingsheng, Wang Peng, Gong Fan, Fang Hehai, Luo Man, Wang Wenjuan, Wang Zhen, Zheng Dingshan, Hu Weida, Chen Xiaoshuang, Lu Wei

机构信息

State Key Laboratory of Infrared Physics , Shanghai Institute of Technical Physics, Chinese Academy of Sciences , Shanghai 200083 , China.

Synergetic Innovation Center of Quantum Information and Quantum Physics , University of Science and Technology of China , Hefei 230026 , China.

出版信息

Nano Lett. 2018 Sep 12;18(9):5439-5445. doi: 10.1021/acs.nanolett.8b01795. Epub 2018 Aug 27.

Abstract

Single-photon detectors that can resolve photon number play a key role in advanced quantum information technologies. Despite significant progress in improving conventional photon-counting detectors and developing novel device concepts, single-photon detectors that are capable of distinguishing incident photon number at room temperature are still very limited. We demonstrate a room-temperature photon-number-resolving detector by integrating a field-effect transistor configuration with core/shell-like nanowires. The shell serves as a photosensitive gate, shielding negative back-gated voltage, and leads to a persistent photocurrent. At room temperature, our detector is demonstrated to identify 1, 2, and 3 photon-number states with a confidence of >82%. The detection efficiency is determined to be 23%, and the dark count rate is 1.87 × 10 Hz. Importantly, benefiting from the anisotropic nature of 1D nanowires, the detector shows an intrinsic photon-polarization selection, which distinguishes itself from existing intensity single-photon detectors. The unique performance for the single-photon detectors based on single nanowire demonstrates the great potential for future single-photon detection applications.

摘要

能够分辨光子数的单光子探测器在先进量子信息技术中起着关键作用。尽管在改进传统光子计数探测器和开发新型器件概念方面取得了重大进展,但能够在室温下区分入射光子数的单光子探测器仍然非常有限。我们通过将场效应晶体管配置与核壳状纳米线集成,展示了一种室温光子数分辨探测器。外壳用作光敏栅极,屏蔽负背栅电压,并导致持续光电流。在室温下,我们的探测器被证明能够以大于82%的置信度识别1、2和3光子数状态。检测效率确定为23%,暗计数率为1.87×10 Hz。重要的是,受益于一维纳米线的各向异性性质,该探测器显示出固有的光子偏振选择,这使其有别于现有的强度型单光子探测器。基于单根纳米线的单光子探测器的独特性能展示了未来单光子探测应用的巨大潜力。

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