Quantum weak measurement amplifies dispersion signal of Rydberg atomic system
Yinghang Jiang, Jiguo Wu, Meng Shi, Han-Qing Zheng, Fei Guo, Zhiguang Xiao, Zhiyou Zhang
Sichuan University Chinese Academy of Sciences Technology and Engineering Center for Space Utilization
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摘要与影响
This paper presents a scheme to amplify dispersion signal of Rydberg atomic microwave detection system, using a quantum weak measurement technique together with improved dimensionless pointer. The scheme effectively mitigates the impact of technical noise and can be used to achieve a measurement precision close to the limit set by atomic shot noise in theory. Compared with the superheterodyne method based on transmission detection, our scheme has been experimentally proved to have a sensitivity increase of 5 ~ 6 dB. In this work, the Rydberg dispersion signal amplification mechanism offers an approach to enhance microwave detection sensitivity, which also facilitates deeper investigations into its dynamic processes and further applications of this mechanism in quantum communication and quantum control. The authors propose a weak value measurement scheme to amplify the dispersion signal of Rydberg atom-based microwave electric field sensors using a superheterodyne technique. Experimentally, they demonstrate that this scheme improves the sensitivity of the microwave receiver by ~ 5-6dB compared to traditional amplitude-based superheterodyne detection.
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物理Quantum optics and atomic interactions
Atomic and Subatomic Physics Research · Cold Atom Physics and Bose-Einstein Condensates
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