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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Assessment of an extended Nijboer-Zernike approach for the computation of optical point-spread functions
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Assessment of an extended Nijboer-Zernike approach for the computation of optical point-spread functions

机译:评估扩展的Nijboer-Zernike方法以计算光学点扩展函数

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We assess the validity of an extended Nijboer-Zernike approach [J. Opt. Soc. Am. A 19, 849 (2002)], based on recently found Bessel-series representations of diffraction integrals comprising an arbitrary aberration and a defocus part, for the computation of optical point-spread functions of circular, aberrated optical systems. These new series representations yield a flexible means to compute optical point-spread functions, both accurately and efficiently, under defocus and aberration conditions that seem to cover almost all cases of practical interest. Because of the analytical nature of the formulas, there are no discretization effects limiting the accuracy, as opposed to the more commonly used numerical packages based on strictly numerical integration methods. Instead, we have an easily managed criterion, expressed in the number of terms to be included in the Bessel-series representations, guaranteeing the desired accuracy. For this reason, the analytical method can also serve as a calibration tool for the numerically based methods. The analysis is not limited to pointlike objects but can also be used for extended objects under various illumination conditions. The calculation schemes are simple and permit one to trace the relative strength of the various interfering complex-amplitude terms that contribute to the final image intensity function.
机译:我们评估了扩展的Nijboer-Zernike方法的有效性[J.选择。 Soc。上午。 [19,849(2002)],基于最近发现的包括任意像差和散焦部分的衍射积分的贝塞尔系列表示,用于计算圆形像差光学系统的光学点扩展函数。这些新的系列表示法提供了一种灵活的方法,可以在散焦和像差条件下准确有效地计算光学点扩展函数,这些条件似乎涵盖了几乎所有实际感兴趣的情况。由于公式的分析性质,与基于严格数值积分方法的更常用数值包相反,没有离散化效果会限制精度。取而代之的是,我们有一个易于管理的标准,用贝塞尔系列表示形式中包含的术语数量来表示,从而保证了所需的准确性。因此,分析方法也可以用作基于数值的方法的校准工具。该分析不仅限于点状对象,还可以用于各种照明条件下的扩展对象。计算方案很简单,可以跟踪影响最终图像强度函数的各种干扰复振幅项的相对强度。

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