DocumentCode :
39065
Title :
Study of Offset Frequency Locking and Active Frequency Stabilization for Two RF-Excited Waveguide CO2 Laser With Common Ground Electrode
Author :
Yanchao Zhang ; Zhaoshuo Tian ; Zhenghe Sun ; Shiyou Fu
Author_Institution :
Inf. Optoelectron. Inst., Harbin Inst. of Technol., Weihai, China
Volume :
50
Issue :
10
fYear :
2014
fDate :
Oct. 2014
Firstpage :
802
Lastpage :
807
Abstract :
In this paper, we designed the offset frequency locking and active frequency stabilization system for the continuous-wave (CW) and electro-optical Q-switched RF-excited waveguide CO2 lasers to provide an ideal light source for coherent radar. The CW laser is used as a local laser, and the pulsed laser is used as a main laser, which can produce Q-switched and cavity-dumped laser synchronously. A closed-loop laser frequency control system was used to stabilize the Q-switched laser at the gain curve center frequency and to lock the two lasers at a selected heterodyne frequency. The system includes two parts: 1) pulsed laser frequency stabilization and 2) offset frequency locking. The frequency stabilization part can keep the Q-switched laser oscillating at the peak of the gain curve by measuring the pulse build-up time continuously and controlling the cavity length. The offset frequency locking circuits keep the heterodyne frequency around the selected frequency by measuring the frequency of the beat signals and controlling the CW laser cavity length. In the experiment, the long-term frequency shift of the pulse laser was measured to be less than ±16 MHz and the offset frequency fluctuation was less than ±2 MHz when the frequency control system was in a closed-loop operation.
Keywords :
Q-switching; carbon compounds; closed loop systems; electro-optical switches; frequency control; gas lasers; laser beams; laser cavity resonators; laser frequency stability; laser mode locking; optical control; waveguide lasers; CO2; CW Q-switched RF-excited waveguide CO2 laser; CW laser cavity length; active frequency stabilization system; beat signal frequency; cavity-dumped laser; closed-loop laser frequency control system; coherent radar; common ground electrode; continuous-wave laser; electro-optical Q-switched RF-excited waveguide CO2 laser; gain curve center frequency; heterodyne frequency; ideal light source; local laser; long-term frequency shift; main laser; offset frequency fluctuation; offset frequency locking circuits; pulse build-up time; pulsed laser frequency stabilization; Frequency control; Laser radar; Laser stability; Measurement by laser beam; Time-frequency analysis; Waveguide lasers; Gas lasers; frequency control; laser stability;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2014.2345552
Filename :
6881643
Link To Document :
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