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Performance of Nd:YAG lasers in coupled generalized self-filtering and positive-branch unstable resonators

机译:Nd:YAG激光器在耦合广义自滤波和正分支不稳定谐振器中的性能

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摘要

A new optical resonator based on the combination of a generalized self-filtering unstable resonator (GSFUR) and a positive-branch unstable resonator (PBUR) in a three-mirror scheme is reported. It is shown both theoretically and experimentally that a nearly diffraction-limited Gaussian-output laser beam with a large mode volume can be obtained with this cavity design. The laser cavity is particularly interesting for use in high-threshold pumped gain media and eliminates some disadvantages of the SFUR and GSFUR designs. This resonator, with an effective magnification of -6.16, was applied to a pulsed Nd:YAG laser in free-running and in Q-switched modes of operation. The output energy was ~70 mJ, 5.5 times greater than when a single GSFUR design was used. The output beam had a pulse duration of ~30 ns in the Q-switched mode of operation and a beam divergence of 0.26 mrad. The required relations for the GSFUR-PBUR optical design and the output energy were derived and verified exper-imentally.
机译:报道了一种基于三镜方案的广义自滤波不稳定谐振器(GSFUR)和正分支不稳定谐振器(PBUR)组合的新型光学谐振器。理论上和实验上都表明,通过这种腔设计,可以获得具有大模量的近衍射极限的高斯输出激光束。激光腔特别适合在高阈值泵浦增益介质中使用,并且消除了SFUR和GSFUR设计的某些缺点。该谐振器的有效倍率为-6.16,在自由运行和Q切换工作模式下应用于脉冲Nd:YAG激光器。输出能量约为70 mJ,是使用单个GSFUR设计时的5.5倍。在Q开关操作模式下,输出光束的脉冲持续时间约为30 ns,光束发散度为0.26 mrad。通过实验推导了GSFUR-PBUR光学设计与输出能量的必要关系。

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