Spectroscopy Detection and Imaging System Based on Line Array Single Photon Detectors

Ruikai Xue, Wei Kong, Ziqiang Peng, Qiang Liu, Yuanting Liu, Bin Jiang, Geng-hua Huang, Rong Shu
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Abstract

Abstract. Single-photon detectors, with their exceptional sensitivity, provide a reliable means for single-photon-level detection, demonstrating significant advantages in detecting weak signals in complex environments compared to traditional detectors. With the continuous advancement in semiconductor manufacturing technology, single-photon detectors based on linear array configurations have emerged and rapidly developed. This study utilizes a linear array single-photon detector in free-running mode combined with a scanning mechanism to design and implement a spectral detection and imaging system. Through the spectral scanning unit, this system successfully achieves precise spectral detection in the 890 nm to 1710 nm range, with a spectral resolution better than 2 nm. Utilizing the imaging scanning unit, the system effectively performs target spectral imaging under single and multiple wavelength conditions at 1064 nm, 1310 nm, and 1520 nm. By optimizing algorithms for data processing, the system can achieve rapid and accurate spectral detection and imaging even under low-light conditions where the average photon count per pixel is less than 3. The results of this study are expected to provide strong technical support for the application of spectral imaging technology in the field of high-speed detection and imaging.
基于线阵单光子探测器的光谱检测和成像系统
摘要单光子探测器以其超高的灵敏度为单光子级探测提供了一种可靠的手段,与传统探测器相比,它在探测复杂环境中的微弱信号方面具有显著优势。随着半导体制造技术的不断进步,基于线性阵列结构的单光子探测器应运而生并得到迅速发展。本研究利用自由运行模式的线性阵列单光子探测器与扫描装置相结合,设计并实现了光谱检测和成像系统。通过光谱扫描单元,该系统成功实现了 890 纳米至 1710 纳米范围内的精确光谱检测,光谱分辨率优于 2 纳米。利用成像扫描单元,该系统可在 1064 nm、1310 nm 和 1520 nm 的单波长和多波长条件下有效执行目标光谱成像。通过优化数据处理算法,即使在每个像素的平均光子数小于 3 的弱光条件下,该系统也能实现快速、准确的光谱检测和成像。这项研究成果有望为光谱成像技术在高速探测和成像领域的应用提供强有力的技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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