Rydberg Atom RF Sensing: State of the Art, Principles, Metrics, and Roadmaps
Anu Babusenan, Fr´ed´eric Munoz, Jean-Baptiste Qu´elene, S´ebastien Boisseau
Commissariat à l'Énergie Atomique et aux Énergies Alternatives
内容与影响
Rydberg-atom-based electrometry provides a quantum, SI-traceable approach to radio-frequency (RF) and microwave electric-field sensing by linking optical spectra to absolute field strength through electromagnetically induced trans parency. Over the past decade, rapid advances in excitation schemes, field-tuning methods, interferometric readout, and cavity-assisted coupling have significantly improved sensitivity, bandwidth, and tunability of Rydberg-based sensors. In parallel, progress in fiber-coupled modules, microfabricated vapor cells, and photonic integration is enabling compact and deployable receiver architectures. This review presents a comprehensive and metrology-oriented synthesis of the physical principles, system architectures, standardized performance metrics, and uncertainty considerations relevant to Rydberg-atom RF sensing. By con solidating diverse developments into a unified performance and evaluation framework, this work provides a critical reference for the design, comparison, and advancement of next-generation quantum RF sensors and standards.
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物理Cold Atom Physics and Bose-Einstein Condensates
Mechanical and Optical Resonators · Atomic and Subatomic Physics Research
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