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Time-correlated single-photon counting with superconducting single-photon detectors

机译:与时间相关的单光子计数与超导单光子探测器

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We report use of a niobium nitride superconducting single-photon detector in a time-correlated single-photon counting experiment. The detector has a timing jitter of 68 ± 3 ps full width at half maximum with a Gaussian temporal profile. The detector's dark count rate and detection efficiency can be tuned by adjusting the bias current applied to the device. Typical values include a detection efficiency of ~1-2% and a dark count rate below 100 Hz. We use this detector to measure time-resolved photoluminescence at wavelengths up to 1650 nm, well beyond the range of conventional silicon detectors. We also use this superconducting detector to measure the emission of a quantum dot single-photon source.
机译:我们报告了在时间相关的单光子计数实验中使用氮化铌超导单光子检测器。该检测器的全角定时抖动为68±3 ps,最大值为一半,具有高斯时间分布。检测器的暗计数率和检测效率可以通过调整施加到设备的偏置电流来调整。典型值包括约1-2%的检测效率和低于100 Hz的暗计数率。我们使用此探测器来测量波长高达1650 nm的时间分辨光致发光,这远远超出了常规硅探测器的范围。我们还使用该超导检测器来测量量子点单光子源的发射。

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