2022年第2期引用格式

  王秀梅, 何进, 王一非, 等. 积分球冷原子钟一体化激光冷却与探测微波腔研究[J]. 时间频率学报, 2022, 45(2): 75-82.
  WANG Xiu-mei, HE Jin, WANG Yi-fei, et al. Research on a new integrated microwave cavity with laser cooling and detection in ISCAC[J]. Journal of Time and Frequency, 2022, 45(2): 75-82.
  左娅妮, 戴少阳, 曹士英, 等. 基于端帽阱的镱离子光钟的系统设计及研究进展[J]. 时间频率学报, 2022, 45(2): 83-88.
  ZUO Ya-ni, DAI Shao-yang, CAO Shi-ying, et al. System design and research progress of the ytterbium ion optical clock based on end-cap trap[J]. Journal of Time and Frequency, 2022, 45(2): 83-88.
  史田田, 关笑蕾, 缪健翔, 等. 基于铷原子420 nm蓝光冷却的主动光钟超辐射激光实验方案[J]. 时间频率学报, 2022, 45(2): 89-94.
  SHI Tian-tian, GUAN Xiao-lei, MIAO Jian-xiang, et al. An experimental scheme of active-optical-clock superradiant laser based on blue-light cooling of 87Rb at 420 nm[J]. Journal of Time and Frequency, 2022, 45(2): 89-94.
  赵春勃, 姚嘉丽, 汪会波, 等. 基于“9”字腔锁模激光器的光学频率梳研究进展[J]. 时间频率学报, 2022, 45(2): 95-103.
  ZHAO Chun-bo, YAO Jia-li, WANG Hui-bo, et al.Research progress in optic frequency comb based on figue-of-9 mode-locking laser[J]. Journal of Time and Frequency, 2022, 45(2): 95-103.
  陈徐宗, 贺轩, 袁志超, 等. 北京大学小型化光抽运热、冷铯束原子钟研究进展[J]. 时间频率学报, 2022, 45(2): 104-109.
  CHEN Xu-zong, HE Xuan, YUAN Zhi-chao, et al. Development of compact optically pumped hot and cold cesium beam atomic clocks in Peking University[J]. Journal of Time and Frequency, 2022, 45(2): 104-109.
  肖娅聪, 刘昆, 刘洪康, 等. 喷泉钟驾驭恒温晶振方法研究[J]. 时间频率学报, 2022, 45(2): 110-114.
  XIAO Ya-cong, LIU Kun, LIU Hong-kang, et al. Research on the steering OCXO by the fountain clock[J]. Journal of Time and Frequency, 2022, 45(2): 110-114.
  张辉, 王心亮, 刘丹丹, 等. 冷原子喷泉的激光准直镜筒研究[J]. 时间频率学报, 2022, 45(2): 115-123.
  ZHANG Hui, WANG Xin-liang, LIU Dan-dan, et al.Research on laser collimation expander in a cold atomic fountain[J]. Journal of Time and Frequency, 2022, 45(2): 115-123.
  汪中, 陈景标. 基于相干滤波和相干布居数囚禁原理的激光原子钟[J]. 时间频率学报, 2022, 45(2): 124-128.
  WANG Zhong, CHEN Jing-biao. Laser atomic clock based on coherent filtering and coherent population trapping[J]. Journal of Time and Frequency,2022,45(2): 124-128.
  贺轩, 袁志超, 方声伟, 等. 小型化光抽运铯束原子钟的Rabi牵引[J]. 时间频率学报, 2022, 45(2): 129-133.
  HE Xuan, YUAN Zhi-chao, FANG Sheng-wei, et al. Rabi pulling in miniaturized optically pumped cesium beam atomic clock[J]. Journal of Time and Frequency, 2022, 45(2): 129-133.
  杨军, 朱宏伟, 刘志栋. 多极阱中汞离子数密度分布对二阶多普勒频移的影响[J]. 时间频率学报, 2022, 45(2): 134-142.
  YANG Jun, ZHU Hong-wei, LIU Zhi-dong, et al. Effect of mercury ion number density distribution in multipole trap on second-order Doppler shift[J]. Journal of Time and Frequency, 2022, 45(2): 134-142.
  郭磊, 陈江, 王多书, 等. 国产小型磁选态铯钟电子倍增器性能测试与分析[J]. 时间频率学报, 2022, 45(2): 143-150.
  GUO lei, CHEN Jiang, WANG Duo-shu. Performance characterization and analysis of electron multiplier for home-made compact magnetically selected cesium atomic clock[J]. Journal of Time and Frequency,2022,45(2): 143-150.
  句博文, 云恩学. 一种应用于CPT原子钟的低相噪微波频率合成器[J]. 时间频率学报, 2022, 45(2): 151-155.
  JU Bo-wen, YUN En-xue. A low phase noise microwave frequency synthesizer applied to CPT atomic clock[J]. Journal of Time and Frequency, 2022, 45(2): 151-155.
  宋跃, 王贵. 芯片级CPT原子钟的研制[J]. 时间频率学报, 2022, 45(2): 156-162.
  SONG Yue, WANG Gui. Manufacture of chip scale CPT atomic clock[J]. Journal of Time and Frequency, 2022, 45(2): 156-162.
  井鑫, 戴家瑜, 刘铁新, 等. 基于发射光谱法的氢钟电离源参数分析探究[J]. 时间频率学报, 2022, 45(2): 163-173.
  JING Xin, DAI Jia-yu, LIU Tie-xin. Analysis of hydrogen maser dissociator source parameters based on emission spectroscopy[J]. Journal of Time and Frequency, 2022, 45(2): 163-173.