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Measurement and compensation of wavefront deformations and focal shifts in high-power laser optics

机译:高功率激光光学系统波前变形和焦点变化的测量和补偿

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We demonstrate the feasibility of passive compensation of the thermal lens effect in fused silica optics, placing suitable optical materials with negative dn/dT in the beam path of a high power near IR fiber laser. Following a brief overview of the involved mechanisms, photo-thermal absorption measurements with a Hartmann-Shack sensor are described, from which coefficients for surface/coating and bulk absorption in various materials are determined. Based on comprehensive knowledge of the 2D wavefront deformations resulting from absorption, passive compensation of thermally induced aberrations in complex optical systems is possible, as illustrated for an F-Theta objective. By means of caustic measurements during high-power operation we are able to demonstrate a 60% reduction of the focal shift in F-Theta lenses through passive compensation.
机译:我们展示了熔融石英光学器件中热透镜效应的被动补偿的可行性,将合适的光学材料与负DN / DT放置在IR光纤激光器附近的高功率的光束路径中。在简要概述所涉及的机制之后,描述了具有Hartmann-Shack传感器的光热吸收测量,从而确定各种材料的表面/涂层和散装吸收的系数。基于由吸收产生的2D波前变形的综合了解,可以实现复杂光学系统中的热诱导像差的被动补偿,如图所示。通过在高功率操作期间苛刻的测量,我们能够通过被动补偿来证明F-Thea镜头中的焦距减少60%。

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