中国空间科学技术 ›› 2025, Vol. 45 ›› Issue (6): 46-61.doi: 10.16708/j.cnki.1000-758X.2025.0088

• 综述 • 上一篇    下一篇

里德堡原子微波探测技术进展

冷晗阳,岳鹏毅*,王磊,贝晓敏,宋洪婷   

  1. 钱学森空间技术实验室,北京100094
  • 收稿日期:2024-11-02 修回日期:2025-06-10 录用日期:2025-07-31 发布日期:2025-11-17 出版日期:2025-12-01

Progress in Rydberg atom microwave detection technology

LENG Hanyang,YUE Pengyi*,WANG Lei,BEI Xiaomin,SONG Hongting   

  1. Qian Xuesen Laboratory of Space Technology, Beijing 100094, China
  • Received:2024-11-02 Revision received:2025-06-10 Accepted:2025-07-31 Online:2025-11-17 Published:2025-12-01

摘要: 里德堡原子微波探测作为近年来涌现出的新型微波探测技术,相较于传统的偶极天线微波接收技术,具有探测灵敏度高、频谱覆盖范围广和前端小型化等突出优势,引起了无线通信、雷达探测和频谱感知等相关领域的广泛兴趣,目前正由实验室研究向工程应用研究过渡。通过总结分析里德堡原子微波探测技术的近年进展对其后续发展走向及未来航天应用进行展望。首先简要介绍了里德堡原子微波探测技术的基本原理;其次,从提升灵敏度、扩展频率范围、丰富探测参数和实用化通信四个方面综述了里德堡原子微波探测技术的国内外研究进展,展示其相对于传统接收机的特性和优势;通过总结里德堡原子微波探测技术的研究项目布局情况分析了不同技术特性的开发难度,指出中短期内超宽频谱覆盖范围和小型化前端的特性更容易开发,而颠覆性更强的极限灵敏度特性更适合作为长期目标;最后,从航天应用角度展望了里德堡原子微波探测技术在地球遥感、电磁频谱态势感知和抗干扰通信方面的应用前景,并分别讨论了各类应用中存在的不同技术难点。

关键词: 里德堡原子, 微波探测, 接收机, 原子气室, 无线通信, 雷达, 频谱感知

Abstract: Rydberg atom microwave detection is a new microwave detection technology that has emerged in recent years. Compared with the traditional dipole antenna microwave receiving technology, it has outstanding advantages such as high detection sensitivity, wide spectrum coverage, and front-end miniaturization. It has aroused widespread interest in related fields such as wireless communications, radar detection, and spectrum sensing. It is currently transitioning from laboratory research to engineering application research. This paper summarizes and analyzes the recent progress of Rydberg atom microwave detection technology and looks forward to its subsequent development and future aerospace applications. Firstly, the basic principle of Rydberg atomic microwave detection technology is briefly introduced; secondly, the research progress of Rydberg atomic microwave detection technology at home and abroad is reviewed from four aspects: improving sensitivity, extending frequency range, enriching detection parameters, and practical communication, and its characteristics and advantages over traditional receivers are demonstrated; thirdly, by summarizing the research project layout of Rydberg atomic microwave detection technology, the development difficulty of different technical characteristics is analyzed, and it is pointed out that the characteristics of ultra-wide spectrum coverage and miniaturized front end are easier to develop in the short and medium term, while the more disruptive extreme sensitivity characteristics are more suitable as long-term goals; finally, from the perspective of aerospace applications, the application prospects of Rydbergatomic microwave detection technology in earth remote sensing, electromagnetic spectrum situational awareness and Anti-interference communication are prospected, and the different technical difficulties existing in various applications are discussed respectively.

Key words: Rydberg atom, microwave detection, receiver, atomic gas chamber, wireless communication, radar, spectrum sensing