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Starting geometry creation and design method for freeform optics

机译:自由曲面光学的开始几何创建和设计方法

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We describe a method for designing freeform optics based on the aberration theory of freeform surfaces that guides the development of a taxonomy of starting-point geometries with an emphasis on manufacturability. An unconventional approach to the optimization of these starting designs wherein the rotationally invariant 3rd-order aberrations are left uncorrected prior to unobscuring the system is shown to be effective. The optimal starting-point geometry is created for an F/3, 200?mm aperture-class three-mirror imager and is fully optimized using a novel step-by-step method over a 4?×?4 degree field-of-view to exemplify the design method. We then optimize an alternative starting-point geometry that is common in the literature but was quantified here as a sub-optimal candidate for optimization with freeform surfaces. A comparison of the optimized geometries shows the performance of the optimal geometry is at least 16× better, which underscores the importance of the geometry when designing freeform optics.
机译:我们描述了一种基于自由曲面的像差理论设计自由曲面光学的方法,该方法指导着眼于可制造性的起点几何分类法的发展。显示出在不模糊系统之前对旋转不变的三阶像差不进行校正的非常规方法,可以优化这些初始设计。最佳起点几何是为F / 3、200毫米孔径级别的三反射镜成像器创建的,并使用新颖的逐步方法在4?×?4度的视场中进行了全面优化举例说明设计方法。然后,我们优化了文献中常见的替代起点几何形状,但此处将其量化为使用自由曲面优化的次优候选者。优化几何结构的比较表明,最佳几何结构的性能至少好16倍,这凸显了在设计自由形式光学器件时几何结构的重要性。

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