论文标题

单像素大区域SNSPD的位置敏感响应

Position Sensitive Response of a Single-Pixel Large-Area SNSPD

论文作者

Marvinney, Claire E., Lerner, Brian E., Puretzky, Alexander A., Miller, Aaron J., Lawrie, Benjamin J.

论文摘要

超导纳米线单光子探测器(SNSPD)通常用作单模纤维耦合的单像素检测器,但是大面积检测器对于从显微镜到自由空间量子通信的应用越来越重要。在这里,我们探索了大区域SNSPD的读数脉冲上升边缘的变化,这是偏置电流的函数,检测器上的光点大小以及每个脉冲的光子数量。我们观察到上升时间的双峰分布,并表明缓慢上升时间的概率增加了大点大小和小光子数的极限。在低偏置电流的限制下,深度计数读数脉冲与组合的大点尺寸和小光孔 - 单位亮点读数脉冲最相似。这些结果与沿纳米线长度不同位置的单个光子激发的单个光子激发的简单模型的流行微波模式模型一致。

Superconducting nanowire single photon detectors (SNSPDs) are typically used as single-mode-fiber-coupled single-pixel detectors, but large area detectors are increasingly critical for applications ranging from microscopy to free-space quantum communications. Here, we explore changes in the rising edge of the readout pulse for large-area SNSPDs as a function of the bias current, optical spot size on the detector, and number of photons per pulse. We observe a bimodal distribution of rise times and show that the probability of a slow rise time increases in the limit of large spot sizes and small photon number. In the limit of low bias currents, the dark-count readout pulse is most similar to the combined large spot size and small-photon-number bright-count readout pulse. These results are consistent with a simple model of traveling microwave modes excited by single photons incident at varying positions along the length of the nanowire.

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