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Decomposition of the total wave aberration in generalized optical systems

机译:广义光学系统中的总波形像差分解

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The increasing use of freeform optical surfaces raises the demand for optical design tools developed for generalized systems. In the design process, surface-by-surface aberration contributions are of special interest. The expansion of the wave aberration function into field- and pupil-dependent coefficients is an analytical method used for that purpose. An alternative numerical approach utilizing data from the trace of multiple ray sets is proposed. The optical system is divided into segments of the optical path measured along the chief ray. Each segment covers one surface and the distance to the subsequent surface. Surface contributions represent the change of the wavefront that occurs due to propagation through individual segments. Further, the surface contributions are divided with respect to their phenomenological origin into intrinsic induced and transfer components. Each component is determined from a separate set of rays. The proposed method does not place any constraints on the system geometry or the aperture shape. However, here we concentrate on near-circular apertures and specify the resulting wavefront error maps using an expansion into Zernike polynomials. (C) 2017 Optical Society of America
机译:越来越多的自由形态光学表面使用对广义系统开发的光学设计工具的需求提高了对光学设计工具的需求。在设计过程中,逐表面像差贡献是特别兴趣的。波形像函数的扩展为现场和瞳孔依赖系数是用于该目的的分析方法。提出了一种利用来自多射线集的迹线的数据的替代数值方法。光学系统被分成沿着主要射线测量的光路的区段。每个段覆盖一个表面和到后表面的距离。表面贡献代表由于通过各个段传播而发生的波前的变化。此外,表面贡献相对于它们的现象学源分为本质诱导和转移组分。每个组件由单独的光线确定。所提出的方法不会在系统几何形状或孔径上放置任何约束。然而,在这里,我们专注于近圆形孔,并使用扩展到Zernike多项式指定所得到的波前误差映射。 (c)2017年光学学会

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