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Intracavity beam shaping of a Nd:YAG laser

机译:Nd:YAG激光器的腔内光束整形

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摘要

To change the intensity distribution of the fundamental mode in a Nd:YAG laser resonator to a top-hat profile we developed and used a dielectric graded-phase mirror. A super-Gaussian mode of the sixth order was generated by means of a graded-phase mirror with a simple ring-shaped phase step on a spherical reflector. The depth of the ring was 90 nm. Measurements with continuous-wave and repetitively pulsed diode-laser pumping were performed and compared. The results are in excellent agreement with the theory. To allow for real-time modification of the modes, adaptive optics such as deformable mirrors can be used. Experiments with an adaptive mirror featuring eight actuators on a glass substrate were performed. It was not yet possible to generate super-Gaussian modes with a deformable mirror but the beam quality in the multi-mode regime was improved significantly without closed-loop electronics. A reduction of the M~2-value by 39% was achieved.
机译:为了将Nd:YAG激光谐振器中基本模式的强度分布更改为礼帽轮廓,我们开发并使用了介电渐变相镜。六阶超高斯模式是通过在球面反射镜上具有简单环形相位阶梯的渐变相位镜产生的。环的深度为90nm。进行了连续波和重复脉冲二极管激光泵浦的测量并进行了比较。结果与理论非常吻合。为了允许模式的实时修改,可以使用诸如可变形反射镜之类的自适应光学器件。使用在玻璃基板上具有八个致动器的自适应反射镜进行了实验。尚不可能使用可变形镜产生超高斯模,但是在没有闭环电子装置的情况下,多模态的光束质量得到了显着改善。 M〜2值降低了39%。

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