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Characterization of a miniaturized unimorph deformable mirror for high power cw-solid state lasers

机译:高功率连续固体激光器的微型单晶形可变形镜的特性

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We have developed a new type of unimorph deformable mirror for real-time intra-cavity phase control of high power cw-lasers. The approach is innovative in its combination of super-polished and pre-coated highly reflective substrates, the miniaturization of the unimorph principle, and the integration of a monolithic tip/tilt functionality. Despite the small optical aperture of only 9 mm diameter, the mirror is able to produce a stroke of several microns for low order Zernike modes, paired with a residual static root-mean-square aberration of less than 0.04 μm. In this paper, the characteristics of the mirror such as the influence functions, the dynamic behavior, and the power handling capability are reported. The mirror was subjected to a maximum of 490 W of laser-light at a wavelength of 1030 nm. Due to the high reflectivity of over 99.998 % the mirror is able to withstand intensities up to 1.5 MW/cm~2.
机译:我们已经开发出一种用于大功率连续激光腔内实时相位控制的新型单晶形可变形反射镜。该方法的创新之处在于将超抛光和预镀膜的高反射性基材相结合,单晶原理的小型化以及单片尖端/倾斜功能的集成。尽管直径只有9毫米的光学孔径很小,但对于低阶Zernike模式,该反射镜仍能产生几微米的行程,并具有小于0.04μm的剩余静态均方根像差。本文介绍了反射镜的特性,如影响函数,动态行为和功率处理能力。该反射镜在1030 nm波长处经受最大490 W的激光。由于具有超过99.998%的高反射率,该反射镜能够承受高达1.5 MW / cm〜2的强度。

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