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Digital refraction distortion correction with an astigmatic coherence sensor

机译:用像散相干传感器校正数字折射畸变

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摘要

We demonstrate the sensing and correction of an isoplanatic refractive distortion (not lens aberrations), using the complete measurement of the partially coherent field in an aperture that the previously described astigmatic coherence sensor provides. Isoplanatic distortions, and in general distortions that do not cause energy loss, maintain the orthogonality of the coherent modes. We use the fact that a common distortion will occur to all coherent modes to separate the distortion from the source behind it, rather than requiring a reference source at a different wavelength. Digital deconvolution was performed on the full four-dimensional partially coherent field for simultaneously computing the distortion and the source intensity distribution.
机译:我们使用对先前描述的像散相干传感器提供的光圈中的部分相干场的完整测量,来演示等平面折射畸变(不是透镜像差)的感测和校正。等平面畸变以及通常不会引起能量损失的畸变会保持相干模的正交性。我们使用这样一个事实,即所有相干模式都将发生常见失真,以将失真与背后的源分开,而不需要使用不同波长的参考源。在整个四维部分相干场上执行了数字反卷积,以同时计算失真和源强度分布。

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