DocumentCode :
185961
Title :
The research of control system for Cesium atomic fountain clock
Author :
Dandan Liu ; Xinliang Wang ; Rui Lin ; Jiang Chen ; Hui Zhang ; Jun Ruan ; Yong Guan ; Fengxiang Yu ; Junru Shi ; Shougang Zhang
Author_Institution :
Nat. Time Service Center, Xi´an, China
fYear :
2014
fDate :
19-22 May 2014
Firstpage :
1
Lastpage :
4
Abstract :
The control system for Cesium atomic fountain clock is described in detail in this paper. It consists of five parts, automatic digital frequency locking system of extended cavity diode laser (ECDL), the time serial control system, the data acquisition system, the microwave frequency synthesizer control system and the servo control system. With automatic digital frequency locking system, the frequency of ECDL can be locked to any saturated absorption curve automatically and remains locked throughout a series of abrupt disturbance. And moreover, the laser system can relock itself in few seconds when the frequency of the laser is out of range. The time serial control system generate thirteen time serial signals synchronously, including Transistor-Transistor Logic (TTL) signals and arbitrary waveform signals. Moreover, the result shows that these signals are synchronized within 10 μs. The time of flight (TOF) signals are obtained combined with data acquisition system. The resulting Ramsey resonance signal is obtained by sweeping frequency of the synthesizer. The frequency of the 9.2 GHz synthesizer is square-wave modulated by the servo control system so that the frequency of the quartz crystal oscillator is locked to the atomic resonance of the fountain.
Keywords :
atomic clocks; automatic frequency control; caesium; crystal oscillators; data acquisition; frequency standards; frequency synthesizers; laser mode locking; microwave diodes; microwave oscillators; semiconductor lasers; servomechanisms; square-wave generators; synchronisation; transistor-transistor logic; ECDL; Ramsey resonance signal; TTL signal synchronisation; arbitrary waveform signal; atomic resonance; automatic digital frequency locking system; cesium atomic fountain clock; data acquisition system; extended cavity diode laser; frequency 9.2 GHz; laser system; microwave frequency synthesizer control system; quartz crystal oscillator; saturated absorption curve; servo control system; square wave modulation; sweeping frequency; time of flight signal; time serial control system; transistor-transistor logic; Atomic clocks; Control systems; Data acquisition; Frequency control; Frequency synthesizers; Resonant frequency; Synchronization; Ramsey resonance signal; control system; servo control; time serial control system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Frequency Control Symposium (FCS), 2014 IEEE International
Conference_Location :
Taipei
Type :
conf
DOI :
10.1109/FCS.2014.6859951
Filename :
6859951
Link To Document :
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