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On the use of surrogate models in the analytical decompositions of refractive index gradients obtained through quasiconformal transformation optics

机译:关于在通过准保形变换光学系统获得的折射率梯度的解析分解中使用替代模型

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摘要

Recent advances in the field of transformation optics (TO) have renewed interest in gradient-index (GRIN) optical systems. By transforming a classically inspired aspherical lens to a flat geometry using TO, one can achieve a design with better field-of-view (FOV) performance than traditional radial GRIN lenses. In order to understand the underlying physics of this performance improvement, TO-derived solutions of various designs are decomposed into a 2D-polynomial basis to analyze their behavior and to determine which terms improve optical performance. A comprehensive study of this sort involves thousands of iterations of numerical TO and ray tracing. By training a surrogate model to approximate the TO calculation, the procedure can be greatly accelerated, dramatically reducing the time of this study from weeks to hours. The accuracy of the surrogate model approximation is verified against the original TO solution, and its usefulness in a system-by-design procedure is tested in a series of single- and multi-objective optimizations.
机译:变换光学(TO)领域的最新进展已引起人们对梯度折射率(GRIN)光学系统的兴趣。通过使用TO将经典启发的非球面透镜转换为平面几何形状,可以实现比传统径向GRIN透镜更好的视野(FOV)性能的设计。为了了解这种性能改善的基本原理,将各种设计的TO衍生解决方案分解为2D多项式基础,以分析其行为并确定哪些项可以改善光学性能。全面的研究涉及数以千计的数字TO和射线跟踪迭代。通过训练替代模型来近似TO的计算,可以大大加快该过程,从而将这项研究的时间从数周减少到数小时。相对于原始的TO解决方案,验证了替代模型逼近的准确性,并且在一系列单目标和多目标优化中测试了其在系统设计过程中的有用性。

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