中国空间科学技术 ›› 2026, Vol. 46 ›› Issue (1): 83-96.doi: 10.16708/j.cnki.1000-758X.2026.0011

• 综述 • 上一篇    下一篇

中长波红外SNSPD及其天文应用探讨

徐鼎言,陈奇,张蜡宝*,吴培亨   

  1. 南京大学超导电子研究所,南京210023
  • 收稿日期:2025-05-13 修回日期:2025-07-15 录用日期:2025-07-20 发布日期:2026-01-09 出版日期:2026-01-30

Mid-to long-wave infrared SNSPD and discussion on its applications in astronomy

XU Dingyan,CHEN Qi,ZHANG Labao*,WU Peiheng   

  1. Research Institute of Superconductor Electronics, Nanjing University, Nanjing 210023, China
  • Received:2025-05-13 Revision received:2025-07-15 Accepted:2025-07-20 Online:2026-01-09 Published:2026-01-30

摘要: 超导纳米线单光子探测器(Superconducting Nanowire Single-Photon Detector , SNSPD)是一种性能优异的可扩展到中长波红外的单光子探测器,十分符合行星宜居性探测等天文观测任务,满足观测物质辐射波段广、信号能量弱、极低暗计数等要求。本文介绍了SNSPD的主要光响应模型,将SNSPD性能参数与天文探测指标之间建立联系,概述了SNSPD在中长波红外波段扩展的历程,从材料、工艺、器件结构、光学吸收增强结构、阵列规模等角度分析研究方向和难点,并对其在天文探测领域中的应用如激光雷达、系外行星光谱检测等进行可行性讨论,最后总结展望了中长波红外SNSPD的发展方向,点出了继续扩展波长、信噪比提升、小型化等仍需解决的问题。目前SNSPD已经在29μm波长处实现了饱和的内量子效率,但距实现百万像素阵列、高探测效率器件仍有较大距离。随着微纳加工技术和制冷技术的进步,得以畅想星载高效中长波SNSPD阵列器件。

关键词: 中长波红外, 超导纳米线单光子探测器, 行星宜居性探测, 天文探测

Abstract: Superconducting nanowire single-photon detector (SNSPD) is a high-performance single-photon detector that can be extended to the mid-to long-wave infrared range. It is highly suitable for astronomical observation missions with requirements of a wide observation range, weak signal detection, and low dark count rates. This article introduces optical response models of SNSPD, establishes a connection between SNSPD parameters and astronomical measures, and describes the development of SNSPD in the mid-to long-wave infrared band. It analyzes the research directions and difficulties from the perspectives of materials, fabrications, device structures, optical enhancement structures, and large array size. It discusses the feasibility of its applications in astronomical detection fields, such as Lidar and exoplanet spectral detection. Finally, it summarizes and looks forward to the development direction of mid-to long-wave SNSPD, highlighting the issues that still need to be resolved, such as further wavelength extension, infrared optical enhancement structures, and miniaturization. SNSPD has achieved saturated internal quantum efficiency at 29μm, but there is still a far way from realizing megapixel arrays and high-detection efficiency devices. With the advancement of micro-nano processing technology and refrigeration technology, it is accessible to achieve high-efficiency mid-to long-wave SNSPD array devices on satellites.

Key words: mid-to long-wave infrared, superconducting nanowire single-photon detector, habitable planets detection, astronomical observation