• Acta Photonica Sinica
  • Vol. 50, Issue 6, 154 (2021)
Chungang ZHANG, Wei LI, Hao ZHANG, Mingyong JING, and Linjie ZHANG*
Author Affiliations
  • State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Laser Spectroscopy, Shanxi University, Taiyuan030006, China
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    DOI: 10.3788/gzxb20215006.0602001 Cite this Article
    Chungang ZHANG, Wei LI, Hao ZHANG, Mingyong JING, Linjie ZHANG. Power Frequency Electric Field Measurement Based on Electromagnetic Induced Transparent Spectrum under Radio Frequency Field[J]. Acta Photonica Sinica, 2021, 50(6): 154 Copy Citation Text show less
    References

    [1] Liang CHEN, Wenrui WANG, Fanglin LU等. Portable wireless power frequency electric field sensor network. Instrument Technique and Sensor, 424, 8-14+18(2018).

    [2] Jingang WANG, Wei LIN, Jian LI等. Study on capacitive alternating electric field sensor detecting test on power frequency electric field. Transducer Microsystem Technologies, 29, 21-23(2010).

    [3] Guoxiong JIANG, Jianzhong YANG. Power frequency electric field measurement and the study of a new type measuring probe. High Voltage Engineering, 11, 1-5(1985).

    [4] R CA LFERNESS. Waveguide electronic modulators. Ieee Transactions on Microwave Theory and Techniques, 30, 1121-1137(1982).

    [5] K HIDAKA, T KOUNO, I HAYASHI. Simultaneous measurement of two orthogonal components of electric field using a Pockels device. Review of Scientific Instruments, 60, 1252-1257(1989).

    [6] C H BULMER, W K BURNS, S C HISER. Pyroelectric effects in LiNbO3 channel-waveguide devices. Applied Physics Letters, 48, 1036-1038(1986).

    [7] T MAENO, Y NONAKA, T TAKADA. Determination of electric field distribution in oil using the Kerr-effect technique after application of DC voltage. IEEE Transactions on Electrical Insulation, 25, 475-480(1990).

    [8] A OSTERWALDER, F MERKT. Using high rydberg states as electric field sensors. Physical Review Letters, 82, 1831-1834(1999).

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

    [10] Haoquan FAN, S KUMAR, J SEDLACEK et al. Atom based RF electric field sensing. Journal of Physics B: Atomic, Molecular and Optical Physics, 48, 1-13(2015).

    [11] T F GALLAGHER. Rydberg atoms, 70-102(1994).

    [12] C FABER, S HAROCHE. Observation of giant polarizabilities in atomic sodium Rydberg states. Optics Communications, 15, 254-257(1975).

    [13] J P MARANGOS. Electromagnetically induced transparency. Journal of Modem Optics, 45, 471-503(1998).

    [14] V BENDKOWSKY, B BUTSCHER, J NIPPER et al. Observation of ultralong-range Rydberg molecules. Nature, 458, 1005-1008(2009).

    [15] Yuechun JIAO, Jianming ZHAO, Suotang JIA. Broadband Rydberg atom-based radio-frequency field sensor. Acta Physica Sinica, 67(2018).

    [16] Zhiwei YANG, Yuechun JIAO, Xiaoxuan HAN等. Electromagnetically induced transparency of a cesium Rydberg atom in weak radio-frequency field. Acta Physica Sinica, 66(2017).

    [17] S H AUTLER, C H TOWENS. Stark effect in rapidly varying fields. Physical Review, 100, 703-722(1955).

    [18] Y ZHANG, M CIOCCA, L W HE et al. Measurement of atomic polarizabilities using Floquet spectroscopy. Physical Review A, 50, 1101-1106(1994).

    [19] Xinghong HE, Baiwen LI, Chengxiu ZHANG. Polarizabilities of high Rydberg alkali atoms. Acta Physica Sinica, 38, 1717-1721(1989).

    Chungang ZHANG, Wei LI, Hao ZHANG, Mingyong JING, Linjie ZHANG. Power Frequency Electric Field Measurement Based on Electromagnetic Induced Transparent Spectrum under Radio Frequency Field[J]. Acta Photonica Sinica, 2021, 50(6): 154
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