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Recent Progress in Mechanically Q-switched 2.94 μm Er:YAG - promising pump source for 4-μm Room Temperature Fe:ZnSe Lasers

机译:机械调Q开关2.94μmEr:YAG的最新进展-有望用于4μm室温Fe:ZnSe激光器的泵浦光源

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We report laser operation of spinning mirror mechanically Q-switched (MQS), flashlamp pumped 2.94 μm Er:YAG laser depending on the angular speed of the mirror, repetition rate, size and temperature of the gain element, pulse duration and jitter of Q-switch pulses, as well as pump pulse energy. The highest output energy of 260 mJ with a pulse duration of 150 ns was realized with the use of 7×120 mm Er(50%):YAG at 5 Hz repetition rate and 4200 rad/s angular speed of the spinning mirror. The efficiency of Q-switched operation was -50% with respect to free-running regime. Using optical triggering, the pulse jitter was measured to be smaller than 10 ns for 160 ns Q-switched pulses. Optical triggering could be used for synchronization with mode-locked laser in chirp-pulse and regenerative amplifiers. We also report on development of room temperature gain-switched Fe:ZnSe laser pumped by a radiation of MQS EnYAG laser. The maximum output energy of 9 mJ from Fe:ZnSe laser was demonstrated using MQS Er:YAG laser as pump source.
机译:我们报告了机械旋转Q开关(MQS),闪光灯泵浦的2.94μmEr:YAG激光的旋转镜的激光操作,具体取决于镜的角速度,重复率,增益元件的尺寸和温度,Q-的脉冲持续时间和抖动开关脉冲以及泵浦脉冲能量。通过以5 Hz的重复频率和4200 rad / s旋转镜的角速度使用7×120 mm Er(50%):YAG,实现了260 mJ的最高输出能量和150 ns的脉冲持续时间。相对于自由运行方式,Q切换操作的效率为-50%。使用光触发,对于160 ns的Q开关脉冲,测量到的脉冲抖动小于10 ns。光触发可用于与chi脉冲和再生放大器中的锁模激光同步。我们还报告了通过MQS EnYAG激光辐射泵浦的室温增益转换Fe:ZnSe激光器的开发情况。使用MQS Er:YAG激光器作为泵浦源证明了Fe:ZnSe激光器的最大输出能量为9 mJ。

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