论文标题
使用低温偏置电路的超导纳米电视单光子探测器的纳米秒门控
Nanosecond gating of superconducting nanowire single-photon detectors using cryogenic bias circuitry
论文作者
论文摘要
超导纳米线单光子探测器(SNSPDS)显示出几乎统一效率,低的深度计数速率和较短的恢复时间。将这些特征与SNSPD的时间控制结合起来,可以扩大其应用,因为在较高的动态范围计数或泵探针光谱或激光雷达的时间过滤方面的主动脱落或时间过滤。为此,我们展示了SNSPD的主动门控,最小的上升时间为2.4 ns,总门长度为5.0 ns。我们展示了上升时间如何取决于检测器与对照电子的结合。距离窗口以1.0 MHz的重复速率以及未支配,自由运行的操作证明了完全自由的,可充电至500 ns。控制门的控制电子设备安装在闭合循环吸附低温恒温器的2.3 k阶段,而检测器在0.8 K处的冷阶段进行操作。我们表明,在门控窗口的按时,检测器的效率和时机抖动不会改变。我们利用封闭式操作来证明一种将光子计数动态范围增加的方法增加了一个因子11.2,并在模拟的泵探针实验中对强泵的时间过滤。
Superconducting nanowire single-photon detectors (SNSPDs) show near unity efficiency, low dark count rate, and short recovery time. Combining these characteristics with temporal control of SNSPDs broadens their applications as in active de-latching for higher dynamic range counting or temporal filtering for pump-probe spectroscopy or LiDAR. To that end, we demonstrate active gating of an SNSPD with a minimum off-to-on rise time of 2.4 ns and a total gate length of 5.0 ns. We show how the rise time depends on the inductance of the detector in combination with the control electronics. The gate window is demonstrated to be fully and freely, electrically tunable up to 500 ns at a repetition rate of 1.0 MHz, as well as ungated, free-running operation. Control electronics to generate the gating are mounted on the 2.3 K stage of a closed-cycle sorption cryostat, while the detector is operated on the cold stage at 0.8 K. We show that the efficiency and timing jitter of the detector is not altered during the on-time of the gating window. We exploit gated operation to demonstrate a method to increase in the photon counting dynamic range by a factor 11.2, as well as temporal filtering of a strong pump in an emulated pump-probe experiment.