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首页> 外文期刊>Quantum electronics >Control of phase locking in a set of lasers with self-pumped phase-conjugate gain-grating mirrors using a passive Q-switch
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Control of phase locking in a set of lasers with self-pumped phase-conjugate gain-grating mirrors using a passive Q-switch

机译:使用无源Q开关通过自泵浦相位共轭增益光栅镜控制一组激光器中的锁相

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摘要

We studied the possibility of controlling phase-locked lasing of a set of lasers with self-pumped phase-conjugate gain-grating mirrors by using a passive Q-switch and selecting the gain of one of the lasers. The ranges of stable operation are calculated by mathematical simulation and well agree with the experimental results. Single-mode radiation in the form of trains of phase-locked laser pulses are experimentally obtained for the first time in a three-channel diffraction-coupled gain-grating Nd:YAG laser system with a LiF: F-_2 2 passive Q-switch. The space-time pattern of the trains of 1.064-μm nanosecond pulses is the same in the channels with and without Q-switch and their interference pattern contrast reaches 0.81.
机译:我们研究了通过使用无源Q开关并选择其中一个激光器的增益来利用自泵浦相位共轭增益光栅镜控制一组激光器的锁相激射的可能性。稳定运行范围通过数学模拟计算得出,与实验结果吻合良好。在具有LiF:F-_2 2无源Q开关的三通道衍射耦合增益光栅Nd:YAG激光系统中,首次通过实验获得了一系列锁相激光脉冲形式的单模辐射。 。在具有和不具有Q开关的通道中,1.064μm纳秒脉冲序列的时空模式相同,并且它们的干涉模式对比度达到0.81。

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