里德堡原子超外差微波测量技术研究进展
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Research progress on Rydberg atomic superheterodyne microwave measurement technology
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    摘要:

    介绍了里德堡原子超外差微波测量技术的物理原理与典型方法,阐述了其在灵敏度提升、相位测量及动态范围扩展等方面的研究进展,分析了该技术在航空装备应用中的潜在价值与当前局限,探讨了该技术体系从实验室迈向航空装备应用的发展脉络与关键技术挑战。指出该技术当前成熟度尚处于原理突破向装备集成的过渡阶段,提出该技术迈向航空装备应用应遵循核心单元芯片化集成、系统级环境适应性强化、面向任务的网络化协同感知三个阶段。为构建新一代高灵敏、分布式、智能化的航空微波测量体系提供了前瞻性技术路线图。

    Abstract:

    This paper introduces the physical principles and typical methods of Rydberg atomic superheterodyne microwave measurement technology, elaborates on its research advancements in sensitivity enhancement, phase measurement, and dynamic range expansion, analyzes its potential value and current limitations in aviation equipment applications, and explores the developmental trajectory and key technical challenges involved in transitioning this technology from laboratory research to practical aviation applications. It points out that the current maturity level of this technology is in the transitional stage from theoretical breakthroughs to equipment integration. Furthermore, it proposes a three-phase roadmap for advancing this technology toward aviation applications: chip-scale integration of core units, enhanced environmental robustness at the system level, and mission-oriented networked collaborative sensing. It provides a prospective technology roadmap for constructing a new generation of highly sensitive, distributed, and intelligent aviation microwave measurement systems.

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杜强, 郝建海, 白金海, 胡栋, 王宇, 徐浩天, 张烨元.里德堡原子超外差微波测量技术研究进展[J].计测技术,2025,(6):50~64:
10.11823/j. issn.1674-5795.2025.06.04.

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  • 在线发布日期: 2026-01-05
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