[1] |
Wen-jie WAN,Zi-jing QIU,Feng QI,Gang-hua MEI,Da ZHONG.
Design of a Miniaturized Low Noise 10 MHz Crystal Oscillator for Rubidium Atomic Frequency Standard
[J]. Chinese Journal of Magnetic Resonance, 2022, 39(4): 467-475.
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[2] |
Shuai NIE,Peng-fei WANG,Feng ZHAO,Fang WANG,Gang MING,Zi-jing QIU,Song-bai KANG,Gang-hua MEI.
A Physics Package with Shot-noise Limited Frequency Stability Better Than 1×10-13τ-1/2 for Rubidium Atomic Frequency Standards
[J]. Chinese Journal of Magnetic Resonance, 2022, 39(1): 108-114.
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[3] |
BAO Wan-jing, ZENG Qing-qi, YU Fang, QIN Lei, CHEN Zhi-yong.
A Scheme for Generating Discontinuous Microwave Inquiry Signal in Rubidium Atomic Frequency Standard
[J]. Chinese Journal of Magnetic Resonance, 2020, 37(2): 209-215.
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[4] |
LV Jian-feng, HAO Qiang, WANG Peng-fei, ZHAO Feng, MEI Gang-hua.
A Large-Size Slotted Tube Microwave Cavity for High-Performance Rubidium Atomic Frequency Standard
[J]. Chinese Journal of Magnetic Resonance, 2018, 35(1): 128-132.
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[5] |
HUANG Zheng, YAN Shi-dong, MEI Gang-hua, ZHONG Da.
Design and Implementation of a New Frequency Synthesizer for Rubidium Atomic Frequency Standard
[J]. Chinese Journal of Magnetic Resonance, 2017, 34(4): 481-488.
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[6] |
LUO Qi, BAO Wan-jing, QIN Lei, GAO Wei, YU Fang.
A Circuit to Improve Power Amplitude Stability in Miniature Rubidium Atomic Frequency Standard
[J]. Chinese Journal of Magnetic Resonance, 2017, 34(4): 474-480.
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[7] |
NIE Shuai, WANG Peng-fei, MEI Gang-hua, ZHONG Da.
Magnetic Frequency Shift in Rubidium Atomic Frequency Standards
[J]. Chinese Journal of Magnetic Resonance, 2017, 34(2): 200-205.
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[8] |
WANG Peng-fei, WANG Chen, HE Sheng-guo, MEI Gang-hua.
A Slotted-Tube Microwave Cavity for High Performance Miniaturized Rubidium Frequency Standards
[J]. Chinese Journal of Magnetic Resonance, 2016, 33(3): 452-457.
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[9] |
HE Sheng-guo, HAO Qiang, XU Feng, WANG Fang, ZHAO Feng, ZHONG Da, MEI Gang-hua.
A Study on Self-Absorption of Spectral Lines of Rubidium Spectral Lamp
[J]. Chinese Journal of Magnetic Resonance, 2016, 33(2): 288-294.
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[10] |
KANG Song-Bai, LI Wen-Bing, ZHONG Da, MEI Gang-Hua.
A Preliminary Study on Field Distribution in a Slotted Tube Cavity
[J]. Chinese Journal of Magnetic Resonance, 2012, 29(1): 86-92.
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[11] |
HE Chang-ming;ZHANG Xian-yi;YAN Shi-dong;MEI Gang-hua;ZHONG Da.
Design of a Digital Temperature Control Circuit for Rubidium Atomic Frequency Standard
[J]. Chinese Journal of Magnetic Resonance, 2009, 26(3): 375-384.
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[12] |
ZHAO Feng; WANG Fang; ZHONG Da; AN Shao-feng; XIA Bai-hua, MEI Gang-hua.
Measuring and Reducing Pseudo Temperature Coefficient in Rubidium Atomic Frequency Standards
[J]. Chinese Journal of Magnetic Resonance, 2007, 24(2): 191-197.
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[13] |
ZENG Yuan, ZHAO Feng, WU Han-Hua, ZHONG Da, AN Shao-Feng, MEI Gang-Hua.
OPTIMIZATION OF DESIGN OF THE SPECTRAL LAMP FOR GAS CELL RUBIDIUM ATOMIC FREQUENCY STANDARDS
[J]. Chinese Journal of Magnetic Resonance, 2004, 21(3): 345-350.
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[14] |
XIA Bai-Hua, ZHONG Da, AN Shao-Feng, MEI Gang-Hua.
LIGHT SHIFT IN A NEW CAVITY-CELL ASSEMBLY FOR RUBIDIUM ATOMIC FREQUENCY STANDARDS
[J]. Chinese Journal of Magnetic Resonance, 2004, 21(1): 41-48.
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