光子
皮秒
探测器
超短脉冲
超导电性
光电子学
电阻式触摸屏
物理
超电流
热点(地质)
偏压
光学
电压
激光器
约瑟夫森效应
凝聚态物理
工程类
电气工程
量子力学
地球物理学
作者
Gregory Goltsman,O. Okunev,G. Chulkova,A. Lipatov,A. Semenov,К. В. Смирнов,B. Voronov,A. Dzardanov,Carlo Kosik Williams,Roman Sobolewski
摘要
We experimentally demonstrate a supercurrent-assisted, hotspot-formation mechanism for ultrafast detection and counting of visible and infrared photons. A photon-induced hotspot leads to a temporary formation of a resistive barrier across the superconducting sensor strip and results in an easily measurable voltage pulse. Subsequent hotspot healing in ∼30 ps time frame, restores the superconductivity (zero-voltage state), and the detector is ready to register another photon. Our device consists of an ultrathin, very narrow NbN strip, maintained at 4.2 K and current-biased close to the critical current. It exhibits an experimentally measured quantum efficiency of ∼20% for 0.81 μm wavelength photons and negligible dark counts.
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