Acta Photonica Sinica, Volume. 52, Issue 4, 0426001(2023)

Estimation of Rydberg Atomic State Population Excited by Two-photon Resonance

Qiang AN, Chengjing LIU, Kai YANG, Jiawei YAO, Bo WU, and Yi LIN*
Author Affiliations
  • Department of Electronic Science, College of Electronic Science, National University of Defense Technolgy, Changsha 410073, China
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    References(23)

    [1] K JOHN. Chip-scale atomic devices. Applied Physics Review, 5, 031302(2018).

    [2] R GODUN. Atomic clocks compared with astounding accuracy. Nature, 591, 534-535(2021).

    [3] Y WU, J GUO, X FENG et al. Atom-light hybrid quantum gyroscope. Physical Review Applied, 14, 064023(2020).

    [4] M JING, Y HU, J MA et al. Atomic superheterodyne receiver based on microwave-dressed Rydberg spectroscopy. Nature Physics, 16, 911-915(2020).

    [5] Xinkun LI, Feifei WANG, Dechun LIANG et al. Fabrication of chip-scale alkali metal cells. Scientia Sinica Informationis, 45, 693-700(2015).

    [6] Bingying HUANG, Yuzhu WANG. Improvements and applications on the cold atomic fountain. Journal of Astronautic Metrology and Measurement, 30, 1-5(2010).

    [7] Yunqi FU, Yi LIN, Bo WU et al. The radio technology based on Rydberg atom. Chinese Journal of Radio Science, 37, 279-287(2022).

    [8] C HOLLOWAY, M SIMONS, J GORDON et al. Electric field metrology for SI traceability: systematic measurement uncertainties in electromagnetically induced transparency in atomic vapor. Journal of Applied Physics, 121, 233106(2017).

    [9] F ZHOU, F JIA, J MEI et al. The effect of the Doppler mismatch in microwave electrometry using Rydberg electromagnetically induced transparency and Autler-Townes splitting. Journal of Physics B: Atomic, Molecular and Optical Physics, 55, 075501(2022).

    [10] L DOWNES, A MACKELLAR, D WHITING et al. Full-field terahertz imaging at kilohertz frame rates using atomic vapor. Physical Review X, 10, 011027(2020).

    [11] C HOLLOWAY, M SIMONS, A HADDAB et al. A multi-band Rydberg-atom based receiver/antenna: AM/FM stereo reception. IEEE Transactions on Antennas and Propagation, 63, 63-76(2020).

    [12] C HOLLOWAY, M SIMONS, J GORDON et al. Detecting and receiving phase-modulated signals with a Rydberg atom-based receiver. IEEE Antennas and Wireless Propagation Letters, 18, 1853-1857(2019).

    [13] Yi LIN, Fengchuan WU, Ruiqi MAO et al. Development of three-port fiber-coupled vapor cell probe and its application in microwave digital communication. Acta Physica Sinica, 71, 170702(2022).

    [14] J SEDLACEK, A SCHWETTMANN, H KÜBLER et al. Microwave electrometry with Rydberg atoms in a vapour cell using bright atomic resonances. Nature Physics, 8, 819-824(2012).

    [15] Sheng ZOU. Research of alkali mental cell based on ultra-sensitive atomic spin inertial measurement device(2016).

    [16] E VLIEGEN, S KADLECEK, L ANDERSON et al. Faraday rotation density measurements of optically thick alkali metal vapors. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 460, 444-450(2001).

    [17] K WEI, T ZHAO, X FANG et al. In-situ measurement of the density ratio of K-Rb hybrid vapor cell using spin-exchange collision mixing of the K and Rb light shifts. Optics Express, 27, 16169-16183(2019).

    [18] H ZHANG, S ZOU, X CHEN et al. On-site monitoring of atomic density number for an all-optical atomic magnetometer based on atomic spin exchange relaxation. Optics Express, 24, 17234-17241(2016).

    [19] N ŠIBALIĆ, C ADAMS. Rydberg physics(2018).

    [20] N SIBALIC, J PRITCHARD, C ADAMS et al. ARC: an open-source library for calculating properties of alkali Rydberg atoms. Computer Physics Communications, 220, 319-331(2017).

    [21] Shanxia BAO. The spectroscopy of Rydberg electromagnetically induced transparency in external magnetica field(2017).

    [23] Wei HUANG, Zhentao LIANG, Yanxiong DU et al. Rydberg-atom-based electrometry. Acta Physica Sinica, 64, 160702(2015).

    [24] M SIMONS, J GORDON, C HOLLOWAY. Fiber-coupled vapor cell for a portable Rydberg atom-based radio frequency electric field sensor. Applied Optics, 57, 6456-6460(2018).

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    Qiang AN, Chengjing LIU, Kai YANG, Jiawei YAO, Bo WU, Yi LIN. Estimation of Rydberg Atomic State Population Excited by Two-photon Resonance[J]. Acta Photonica Sinica, 2023, 52(4): 0426001

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    Paper Information

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    Received: Sep. 26, 2022

    Accepted: Nov. 2, 2022

    Published Online: Jun. 21, 2023

    The Author Email: LIN Yi (linyi13@nudt.edu.cn)

    DOI:10.3788/gzxb20235204.0426001

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