四象限超导纳米线单光子探测器光斑定位精度研究
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Research on the spot localization accuracy of four-quadrant superconducting nanowire single-photon detector
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    摘要:

    为解决四象限超导纳米线单光子探测器在高计数率条件下光子计数值失真及低信噪比条件下定位困难的问题,本文引入计数值非线性校正机制,推导校正后的高斯光斑定位解析解,提出非整数次幂运算和差定位的原创方法,通过指数n>1增强正负半轴信号差异度,提高定位精度。研究结果表明:高计数率条件下,计数值校正可提升光斑定位的准确性;低信噪比条件下,非整数次幂运算可有效降低定位误差。相较经典的正负半轴差值定位法,当信噪比< 10时,采用1.4次幂运算可将定位误差降低27%;当信噪比> 50时,采用计数值校正的高斯模型可将定位误差降低70%。当光子计数值> 104时,计数值校正的高斯模型法与指数0.8n2的幂运算方法的定位标准差均可小于0.01倍光斑半径。研究成果为实现四象限超导纳米线单光子探测器高精度光斑定位提供了有力支撑。

    Abstract:

    This study addresses the photon count distortion under high count rates and difficult positioning under low Signal-to-Noise Ratio (SNR) condition in Four-Quadrant Superconducting Nanowire Single-Photon Detectors (QD-SNSPD) The nonlinear correction mechanism for photon counts is introduced and an analytical solution for Gaussian spot localization problem after correction is derived. A differential localization method using non-integer power operations is proposed, which increase signal differentiation between positive and negative semi-axes through an exponent n>1 to improve positioning accuracy. Results demonstrate that count correction improves spot localization accuracy under high count rates. Non-integer power operations effectively reduce the positioning errors under low SNR conditions. Compared with classical differential localization methods, the 1.4-power operation reduces the positioning errors by 27% when SNR < 10, and the corrected Gaussian model reduces the errors by 70% when SNR > 50. When photon counts exceed 104, both the corrected Gaussian model and power operation methods (0.8n2) achieve a positioning standard deviation below 0.01 times the spot radius. These findings provide substantial support for high-precision spot localization using QD-SNSPDs.

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李志健, 刘浩, 万超, 郝浩, 赵清源, 米庆改, 张磊, 李聪, 孙博, 毛立涛, 王华兵, 武腾飞.四象限超导纳米线单光子探测器光斑定位精度研究[J].计测技术,2026,46(1):19~32:
10.11823/j. issn.1674-5795.2026.01.02.

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  • 在线发布日期: 2026-03-23
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