THE RESEARCH ON THE KEY TECHNIQUE OF THE PHYSICS PACKAGE OF RUBIDIUM ATOMIC CLOCK

被引:0
|
作者
Zhai Hao [1 ]
Zhang Jun [1 ]
Tu Jianhui [1 ]
Yang Wei [1 ]
Cui Jingzhong [1 ]
Zhang Weiwen [1 ]
机构
[1] LIP, Lanzhou 730000, Peoples R China
来源
SPACE FOR OUR FUTURE | 2013年 / 146卷
关键词
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The physics package of the rubidium atomic clock is the discriminator of the atomic clock, determining the stability, accuracy and the aging rate of the rubidium atomic clock. To improve the stability is the key technique for the physics package of rubidium atomic clock. The optimizing design technique and optics filter technique were adopted in this paper to improve the short term stability of rubidium atomic clock. The parameter optimization technique was applied to get the zero light shift (ZLS) and zero temperature coefficient (ZTC) condition that are close to the superposition. On the bases of the design, the light shift, collision shift and microwave power shift were synthesized as temperature coefficient while the corresponding approach was offered. By this way the long term stability of rubidium atomic clock is improved. The stability of the rubidium atomic clock was improved in large extent with application of above research. Its short term stability sigma(y)(1s) can be below 3x10(-12), while the stability sigma(y)(1day) can be better than 3x10(-14).
引用
收藏
页码:393 / 401
页数:9
相关论文
共 50 条
  • [31] Digital lock-in amplifier for space rubidium atomic clock
    Jain, Pratik
    Priya, Priyanka
    Ram, T. V. S.
    Parikh, K. S.
    Bandi, Thejesh N.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2021, 92 (12):
  • [32] Improving the start-up characteristics of the rubidium atomic clock
    Guo, Yonggang
    Zhu, Lili
    Wang, Shiwei
    Zhang, Jun
    Shi, Fucheng
    Zhang, Jinhai
    Wang, Jianxiang
    Li, Wenxin
    Liu, Zhidong
    AIP ADVANCES, 2022, 12 (04)
  • [33] Pulsed optically pumped rubidium atomic clock with optical detection
    Choi, I. H.
    Park, Y. -H.
    Lee, S. H.
    Lee, J. K.
    Kwon, T. Y.
    Park, S. E.
    2008 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS DIGEST, 2008, : 608 - 609
  • [34] EXPERIMENTS ON A SEMICONDUCTOR-LASER PUMPED RUBIDIUM ATOMIC CLOCK
    HASHIMOTO, M
    OHTSU, M
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 1987, 23 (04) : 446 - 451
  • [35] An Ultra-Miniature Rubidium Atomic Clock Compatible with OCXO
    Cao, Thomas
    Green, Clive
    Little, Cosmo
    2012 EUROPEAN FREQUENCY AND TIME FORUM (EFTF), 2012, : 327 - 331
  • [36] Disciplining a Rubidium Atomic Clock Based on Adaptive Kalman Filter
    Liu, Kun
    Guan, Xiaolong
    Ren, Xiaoqian
    Wu, Jianfeng
    SENSORS, 2024, 24 (14)
  • [37] A modified C-field circuit for the rubidium atomic clock
    Guo, Yonggang
    Zhang, Jun
    Wang, Shiwei
    Wang, Kuan
    Wei, Lixun
    Li, Wenxin
    Lu, Fang
    Liu, Zhidong
    Yang, Wei
    AIP ADVANCES, 2021, 11 (06)
  • [38] A 44-cm3 physics package for the high-performance pulsed optically pumped atomic clock
    Hao, Qiang
    Yang, Shaojie
    Zheng, Shuguang
    Yun, Peter
    Ruan, Jun
    Zhang, Shougang
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2024, 95 (08):
  • [39] Low-Power and Low-Profile Miniature Atomic Clock Ceramic based flat form factor miniature atomic clock physics package (C-MAC)
    Haesler, Jacques
    Balet, Laurent
    Karlen, Sylvain
    Overstolz, Thomas
    Gallinet, Benjamin
    Lecomte, Steve
    Droz, Fabien
    Kautio, Kari
    Karioja, Pentti
    Lahti, Markku
    Maattanen, Antti
    Lahtinen, Ossi
    Hevonkorpi, Ville
    2017 JOINT CONFERENCE OF THE EUROPEAN FREQUENCY AND TIME FORUM AND IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM (EFTF/IFC), 2017, : 55 - 56
  • [40] Does the light shift drive frequency aging in the rubidium atomic clock?
    Camparo, J
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2005, 52 (07) : 1075 - 1078