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Analysis of the detection response of waveguide-integrated superconducting nanowire single-photon detectors at high count rate

机译:波导集成超导纳米线单光子探测器高计数率的探测响应分析

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摘要

Nanophotonic circuitry and superconducting nanowires have been successfully combined for detecting single photons, propagating in an integrated photonic circuit, with high efficiency and low noise and timing uncertainty. Waveguide-integrated superconducting nanowire single-photon detectors (SNSPDs) can nowadays be engineered to achieve subnanosecond recovery times and can potentially be adopted for applications requiring Gcps count rates. However, particular attention shall be paid to such an extreme count rate regime since artifacts in the detector functionality emerge. In particular, a count-rate dependent detection efficiency has been encountered that can compromise the accuracy of quantum detector tomography experiments. Here, we investigate the response of waveguide-integrated SNSPDs at high photon flux and identify the presence of parasitic currents due to the accumulation of charge in the readout electronics to cause the above-mentioned artifact in the detection efficiency. Our approach allows us to determine the maximum photon count rate at which the detector can be operated without adverse effects. Our findings are particularly important to avoid artifacts when applying SNSPDs for quantum tomography.
机译:纳米光子电路和超导纳米线已经成功地组合在一起,用于检测单个光子,并在集成光子电路中传播,具有高效率,低噪声和定时不确定性。如今,集成波导的超导纳米线单光子探测器(SNSPD)可以进行工程设计,以实现亚纳秒的恢复时间,并有可能被用于需要Gcps计数率的应用中。然而,由于检测器功能中出现了伪像,因此应特别注意这种极端计数率机制。特别地,已经遇到了依赖于计数率的检测效率,该效率会损害量子检测器层析成像实验的准确性。在这里,我们研究了在高光子通量下集成波导的SNSPDs的响应,并确定了由于电荷在读出电子设备中的积累而引起的上述寄生现象,从而导致检测效率出现上述伪影。我们的方法使我们能够确定检测器可以工作的最大光子计数速率,而不会产生不利影响。我们的发现对于将SNSPD应用于量子层析成像时避免伪影特别重要。

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  • 来源
    《Applied Physics Letters》 |2019年第10期|101104.1-101104.4|共4页
  • 作者单位

    Univ Munster Inst Phys D-48149 Munster Germany|Univ Munster MNF D-48149 Munster Germany;

    Moscow State Pedag Univ Dept Phys Moscow 119992 Russia;

    Karlsruhe Inst Technol Inst Nanotechnol INT D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol Inst Theoret Solid State Phys TFP D-76131 Karlsruhe Germany;

    Karlsruhe Inst Technol Inst Nanotechnol INT D-76344 Eggenstein Leopoldshafen Germany|Karlsruhe Inst Technol Inst Theoret Solid State Phys TFP D-76131 Karlsruhe Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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