Simple-design ultra-low phase noise microwave frequency synthesizers for high-performing Cs and Rb vapor-cell atomic clocks

被引:31
|
作者
Francois, B. [1 ,2 ]
Calosso, C. E. [2 ]
Hafiz, M. Abdel [1 ]
Micalizio, S. [2 ]
Boudot, R. [1 ]
机构
[1] Univ Franche Comte, CNRS, FEMTO ST, F-25030 Besancon, France
[2] INRIM, I-10135 Turin, Italy
来源
REVIEW OF SCIENTIFIC INSTRUMENTS | 2015年 / 86卷 / 09期
关键词
461.2 Biological Materials and Tissue Engineering - 461.9 Biology - 602.1 Mechanical Drives - 701.2 Magnetism: Basic Concepts and Phenomena - 713.2 Oscillators - 943.3 Special Purpose Instruments - 961 Systems Science;
D O I
10.1063/1.4929384
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
We report on the development and characterization of novel 4.596 GHz and 6.834 GHz microwave frequency synthesizers devoted to be used as local oscillators in high-performance Cs and Rb vapor-cell atomic clocks. The key element of the synthesizers is a custom module that integrates a high spectral purity 100 MHz oven controlled quartz crystal oscillator frequency-multiplied to 1.6 GHz with minor excess noise. Frequency multiplication, division, and mixing stages are then implemented to generate the exact output atomic resonance frequencies. Absolute phase noise performances of the output 4.596 GHz signal are measured to be -109 and -141 dB rad(2)/Hz at 100 Hz and 10 kHz Fourier frequencies, respectively. The phase noise of the 6.834 GHz signal is -105 and -138 dB rad2/Hz at 100 Hz and 10 kHz offset frequencies, respectively. The performances of the synthesis chains contribute to the atomic clock short term fractional frequency stability at a level of 3.1 x 10(-14) for the Cs cell clock and 2 x 10(-14) for the Rb clock at 1 s averaging time. This value is comparable with the clock shot noise limit. We describe the residual phase noise measurements of key components and stages to identify the main limitations of the synthesis chains. The residual frequency stability of synthesis chains is measured to be at the 10(-15) level for 1 s integration time. Relevant advantages of the synthesis design, using only commercially available components, are to combine excellent phase noise performances, simple-architecture, low-cost, and to be easily customized for signal output generation at 4.596 GHz or 6.834 GHz for applications to Cs or Rb vapor-cell frequency standards. (C) 2015 AIP Publishing LLC.
引用
收藏
页数:10
相关论文
共 6 条
  • [1] Ultra-low phase noise frequency synthesis chains for High-performance vapor cell atomic clocks
    Francois, B.
    Boudot, R.
    Calosso, C. E.
    Danet, J. M.
    2015 JOINT CONFERENCE OF THE IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM & THE EUROPEAN FREQUENCY AND TIME FORUM (FCS), 2015, : 81 - 83
  • [2] Simple-Design Low-Noise NLTL-Based Frequency Synthesizers for a CPT Cs Clock
    Boudot, Rodolphe
    Guerandel, Stephane
    de Clercq, Emeric
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2009, 58 (10) : 3659 - 3665
  • [3] Development of low phase noise microwave frequency synthesizers for reducing Dick effect of Cs fountain clocks
    Li, Wenbing
    Du, Yuanbo
    Li, Hui
    Lu, Zehuang
    AIP ADVANCES, 2018, 8 (09):
  • [4] A low phase and amplitude noise microwave source for vapor cell atomic clocks
    Ju, Bowen
    Yun, Peter
    Hao, Qiang
    Nie, Shuai
    Liu, Guobin
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2022, 93 (10):
  • [5] Latest Results in the Development of an Ultra-Low Phase Noise Rb CPT Vapour Cell Atomic Clock
    Burtichelov, Tsvetan
    Everard, Jeremy
    2017 JOINT CONFERENCE OF THE EUROPEAN FREQUENCY AND TIME FORUM AND IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM (EFTF/IFC), 2017, : 837 - 841
  • [6] A low phase noise microwave frequency synthesis for a high-performance cesium vapor cell atomic clock
    Francois, B.
    Calosso, C. E.
    Danet, J. M.
    Boudot, R.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2014, 85 (09):