| [1]Simons M T, Artusio-Glimpse A B, Robinson A K, et al.Rydberg atom-based sensors for radio-frequency electric field metrology, sensing, and communications[J].Measurement: Sensors, 2021,, 18(100273):-
[2]张金标, 彭瑞杰, 彭滟.太赫兹里德堡态下阻塞效应的调控研究[J].Optical Instruments, 2024, 46(1):8-14
[3]张缘圆, 辛明勇, 冯起辉, 等.基于多传感器融合的微型智能综合体研究[J].电力大数据, 2023, 26(03):69-76
[4]郝赫, 寇军, 洪玄淼, 等.基于里德堡原子的无线电波测量[J].Laser & Optoelectronics Progress, 2023, 60(11):1106010-
[5]杜艺杰, 吕子瑶, 胡伟东, 等.基于原子天线的低频电场量子精密测量和应用[J].量子电子学报, 2024, 41(05):701-712
[6]李晓康, 贾凤东, 余方晨, 李明阳, 薛平, 许祥源, 钟志萍.一价镧离子高里德伯态[J].物理学报, 2019, 68(4):043201-
[7]黄巍, 梁振涛, 杜炎雄, 颜辉, 朱诗亮.基于里德堡原子的电场测量[J].物理学报, 2015, 64(16):160702-
[8]张临杰, 景明勇, 张好.基于里德堡原子的微波电场量子传感[J].山西大学学报 自然科学版, 2022, 45(3):712-722
[9]施锡平, 刘尉悦.线性光学采样算法中的多普勒补偿研究[J].量子电子学报, 2024, 41(05):729-737
[10]Li H, Hu J, Bai J, et al.Rydberg atom-based AM receiver with a weak continuous frequency carrier[J].Optics Express, 2022, 30(8):13522-13529
[11]霍智翔.扫频干涉测距振动补偿中单频激光频率标定技术研究[J].哈尔滨工业大学, 2018, 20:-
[12]路桥, 时雷, 毛庆和.双光梳光谱技术研究进展[J].Chinese Journal of Lasers, 2018, 45(4):400001-
[13]Liu B, Zhang L H, Wang Q F, et al.Higher-order and fractional discrete time crystals in Floquet-driven Rydberg atoms[J].Nature Communications, 2024, 15(1):9730-
[14]Bohaichuk S M, Booth D, Nickerson K, et al.Origins of Rydberg-atom electrometer transient response and its impact on radio-frequency pulse sensing[J].Physical Review Applied, 2022, 18(3):034030-
[15]Anand S, Bradley C E, White R, et al.A dual-species Rydberg array[J].Nature Physics, 2024, :1-7
[16]Hu J, Jiao Y, He Y, et al.Improvement of response bandwidth and sensitivity of Rydberg receiver using multi-channel excitations[J].EPJ Quantum Technology, 2023, 10(1):51-
[17]Dixon K, Nickerson K, Booth D W, et al.Rydberg-atom-based electrometry using a self-heterodyne frequency-comb readout and preparation scheme[J].Physical Review Applied, 2023, 19(3):034078-
[18]Ouyang K, Shi Y, Lei M, et al.Continuous broadband microwave electric field measurement in Rydberg atoms based on the DC Stark effect[J].Applied Physics Letters, 2023, 123(26):-
[19]牛琦琦, 苏楠, 刘瑶, 等.里德堡原子双色偏振谱激光稳频[J].Acta Sinica Quantum Optica, 2023, 29(3):31001-
[20]Dixon K, Nickerson K, Booth D W, et al.Rydberg-atom-based electrometry using a self-heterodyne frequency-comb readout and preparation scheme[J].Physical Review Applied, 2023, 19(3):034078-
[21]Wade C G, Marcuzzi M, Levi E, et al.A terahertz-driven non-equilibrium phase transition in a room temperature atomic vapour[J].Nature communications, 2018, 9(1):3567-
[22]Kim B, Chen K T, Hsu C Y, et al.Effect of laser-frequency fluctuation on the decay rate of Rydberg coherence[J].Physical Review A, 2019, 100(1):013815-
[23]程雍, 谭政, 王谨, 等.基于拉曼泵浦-探测光谱的冷原子温度估算[J].量子电子学报, 2017, 34(01):36-39
[24]Eckner W J, Darkwah Oppong N, Cao A, et al.Realizing spin squeezing with Rydberg interactions in an optical clock[J].Nature, 2023, 621(7980):734-739
[25]陈庆庆,.基于里德堡原子的单频微波电场测量[J].陕西:西安电子科技大学, 2021, :-
[26]Holloway C L, Gordon J A, Jefferts S, et al.Broadband Rydberg atom-based electric-field probe for SI-traceable,self-calibrated measurements[J].IEEE Transactions on Antennas and Propagation, 2014, 62(12):6169-6182
[27]Kastberg A, Kastberg A.The Stark Effect[J].Structure of Multielectron Atoms, 2020, :257-272
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