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Optimizing reflective systems using aspheric and freeform surfaces

机译:使用非球面和自由曲面优化反射系统

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The large number of surface types that are manufacturable today provide many available paths to the optical designer. It is not always clear which path provides the optimal balance of merit function complexity, convergence speed, and image quality after optimization. This paper shows that Q-type polynomials provide a strong benefit in both convergence speed and image quality after optimization when the footprint comprises a large portion of the area inside the normalization radius, but for off-axis systems with large decenters this benefit is weakened. Also, the sensitivity of several unobscured reflective designs is compared to show that although surface types with more degrees of freedom can reduce some sensitivities, the design form is the primary driver and a system that occupies a smaller volume will tend to have higher sensitivities to misalignments regardless of surface type.
机译:当今可制造的大量表面类型为光学设计人员提供了许多可用的途径。始终不清楚哪条路径可以在优化后实现优值函数复杂度,收敛速度和图像质量之间的最佳平衡。本文表明,当足迹在归一化半径内占很大一部分面积时,优化后的Q型多项式在收敛速度和图像质量方面都具有强大的优势,但对于偏心较大的离轴系统,这种优势会减弱。此外,比较了几种无遮挡的反射设计的灵敏度,结果表明,尽管具有更大自由度的表面类型可以降低某些灵敏度,但设计形式是主要驱动因素,占据较小体积的系统将倾向于对未对准具有更高的灵敏度。无论表面类型如何。

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