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The effects of centroid anisoplanatism on measuring and mitigating tip-tilt disturbance

机译:质心各向异性对测量和减轻倾斜倾斜干扰的影响

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Centroid anisoplanatism degrades the precision of tip-tilt disturbance measurement and therefore the performance of beam jitter control. In this paper, the arisen of centroid anisoplanatism is explained by Zernike-polynomial expansion in Cartesian coordinate, which focuses on the cross coupling between tip-tilt term and coma term. To our knowledge, this interpretation is significantly different from previous research. The simulation of beam jitter control in presence of centroid anisoplanatism is accomplished. The larger residual variance of tip-tilt disturbances after correction can be found due to centroid anisoplanatism.
机译:质心各向异性会降低倾斜倾斜干扰测量的精度,从而降低光束抖动控制的性能。本文通过笛卡尔坐标系中的Zernike多项式展开来解释质心各向异性的产生,该展开关注于倾斜倾斜项和彗形项之间的交叉耦合。据我们所知,这种解释与以前的研究有很大不同。在质心各向异性的情况下完成了光束抖动控制的仿真。校正后,由于质心各向异性而发现了倾斜倾斜扰动的较大残留方差。

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