• Acta Optica Sinica
  • Vol. 45, Issue 2, 0212002 (2025)
Yingping Ma1,2, Zhigang Feng2,*, Jian Wang1, Zhenfei Song2,**, and Jifeng Qu2
Author Affiliations
  • 1College of Information Engineering, Shenyang University of Chemical Technology, Shenyang 110142, Liaoning , China
  • 2Center for Advanced Metrology Science, National Institute of Metrology, Beijing 100029, China
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    DOI: 10.3788/AOS241525 Cite this Article Set citation alerts
    Yingping Ma, Zhigang Feng, Jian Wang, Zhenfei Song, Jifeng Qu. Microwave Electric Field Measurement Based on Rydberg Atom Off-Resonant Frequency Modulation[J]. Acta Optica Sinica, 2025, 45(2): 0212002 Copy Citation Text show less
    References

    [1] Hill D A, Kanda M, Larsen E B et al. Generating standard reference electromagnetic fields in the NIST anechoic chamber, 0.2 to 40 GHz[R](1990).

    [2] Sedlacek J A, Schwettmann A, Kübler H et al. Microwave electrometry with Rydberg atoms in a vapour cell using bright atomic resonances[J]. Nature Physics, 8, 819-824(2012).

    [3] Hao H, Kou J, Hong X M et al. Radio frequency electric field measurement with Rydberg atoms[J]. Laser & Optoelectronics Progress, 60, 1106010(2023).

    [4] Gordon J A, Simons M T, Haddab A H et al. Weak electric-field detection with sub-1 Hz resolution at radio frequencies using a Rydberg atom-based mixer[J]. AIP Advances, 9, 045030(2019).

    [5] Legaie R, Raithel G, Anderson D A. A millimeter-wave atomic receiver[J]. AVS Quantum Science, 6, 024402(2024).

    [6] Jing M Y, Hu Y, Ma J et al. Atomic superheterodyne receiver based on microwave-dressed Rydberg spectroscopy[J]. Nature Physics, 16, 911-915(2020).

    [7] Ding D S, Liu Z K, Shi B S et al. Enhanced metrology at the critical point of a many-body Rydberg atomic system[J]. Nature Physics, 18, 1447-1452(2022).

    [8] Cai M H, You S H, Zhang S S et al. Sensitivity extension of atom-based amplitude-modulation microwave electrometry via high Rydberg states[J]. Applied Physics Letters, 122, 161103(2023).

    [9] Yang K, Mao R Q, Sun Z S et al. Broadband and highly sensitive measurement based on Rydberg atomic heterodyne sensor[J]. Acta Optica Sinica, 43, 1728001(2023).

    [10] Liao K Y, Tu H T, Yang S Z et al. Microwave electrometry via electromagnetically induced absorption in cold Rydberg atoms[J]. Physical Review A, 101, 053432(2020).

    [11] Yang B W, Yan Y H, Li X J et al. Highly sensitive microwave electrometry with enhanced instantaneous bandwidth[J]. Physical Review Applied, 21, L031003(2024).

    [12] Simons M T, Gordon J A, Holloway C L et al. Using frequency detuning to improve the sensitivity of electric field measurements via electromagnetically induced transparency and Autler-Townes splitting in Rydberg atoms[J]. Applied Physics Letters, 108, 174101(2016).

    [13] Zhang L J, Jia Y, Jing M Y et al. Detuning radio-frequency electrometry using Rydberg atoms in a room-temperature vapor cell[J]. Laser Physics, 29, 035701(2019).

    [14] Simons M T, Artusio-Glimpse A B, Holloway C L et al. Continuous radio-frequency electric-field detection through adjacent Rydberg resonance tuning[J]. Physical Review A, 104, 032824(2021).

    [15] Jia F D, Liu X B, Mei J et al. Span shift and extension of quantum microwave electrometry with Rydberg atoms dressed by an auxiliary microwave field[J]. Physical Review A, 103, 063113(2021).

    [16] Ruan W M, Zhang Y Y, Feng Z G et al. Frequency tunable microwave electric field measurement based on rubidium Rydberg atoms[J]. Acta Metrologica Sinica, 45, 97-102(2024).

    [17] Hu J L, Li H Q, Song R et al. Continuously tunable radio frequency electrometry with Rydberg atoms[J]. Applied Physics Letters, 121, 014002(2022).

    [18] Ouyang K, Shi Y S, Lei M W et al. Continuous broadband microwave electric field measurement in Rydberg atoms based on the DC Stark effect[J]. Applied Physics Letters, 123, 264001(2023).

    [19] Meyer D H, Castillo Z A, Cox K C et al. Assessment of Rydberg atoms for wideband electric field sensing[J]. Journal of Physics B, 53, 034001(2020).

    Yingping Ma, Zhigang Feng, Jian Wang, Zhenfei Song, Jifeng Qu. Microwave Electric Field Measurement Based on Rydberg Atom Off-Resonant Frequency Modulation[J]. Acta Optica Sinica, 2025, 45(2): 0212002
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