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An exact formulation of a filter for rotations in phase gradients and its applications to wavefront reconstruction problems

机译:相位梯度旋转滤波器的精确公式及其在波前重建问题中的应用

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A non-singular and explicit method of constructing a filter exactly for the rotational gradient vector is shown. Such a filter is expected to be useful in phase reconstruction and related problems in adaptive optics with Hartmann sensors. In the deduction of this method, great care is taken in the arrangement of coordinates in order to make the mathematical implementation exact and consistent. The most notable consequence of the deduction is that, after the rotation is eliminated on coordinates shifted a half-period from the original, integral paths should once more be shifted a half-period from the centre of rotations to obtain a consistent wavefront reconstruction. Differences from conventional least methods are shown with experimental results. This formula would be effective for accurate decomposition of the rotation component, which is useful for phase reconstruction and related problems.
机译:展示了一种非奇异的显式方法,该方法为旋转梯度矢量构造了一个精确的滤波器。期望这种滤波器在具有Hartmann传感器的自适应光学系统中可用于相位重建和相关问题。在推导此方法时,要格外小心地安排坐标,以使数学实现准确而一致。推论的最显着结果是,在消除了从原始坐标偏移了半个周期的坐标上的旋转之后,积分路径应该再次从旋转中心偏移了半个周期以获得一致的波前重建。实验结果显示了与常规最小方法的差异。该公式对于旋转分量的精确分解将是有效的,这对于相位重建和相关问题很有用。

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