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Study of Offset Frequency Locking and Active Frequency Stabilization for Two RF-Excited Waveguide CO2 Laser With Common Ground Electrode

机译:两种带共用接地电极的射频激励波导CO2激光的失调锁频和有源频率稳定化研究

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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.
机译:在本文中,我们为连续波(CW)和电光Q开关RF激发波导CO2激光器设计了偏置频率锁定和有源频率稳定系统,为相干雷达提供了理想的光源。连续激光器用作局部激光器,脉冲激光器用作主激光器,可以同时产生调Q和腔倾卸激光器。使用闭环激光器频率控制系统将调Q激光器稳定在增益曲线中心频率,并将两个激光器锁定在选定的外差频率。该系统包括两个部分:1)脉冲激光频率稳定和2)偏移频率锁定。频率稳定部分可以通过连续测量脉冲建立时间并控制腔体长度,使调Q激光器在增益曲线的峰值处保持振荡。偏移频率锁定电路通过测量拍频信号的频率并控制CW激光腔的长度,将外差频率保持在所选频率附近。在实验中,当频率控制系统处于闭环运行状态时,测得的脉冲激光器的长期频移小于±16 MHz,偏移频率波动小于±2 MHz。

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