首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Single freeform surface design for prescribed input wavefront and target irradiance
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Single freeform surface design for prescribed input wavefront and target irradiance

机译:单个自由形式表面设计用于规定输入波前和目标辐照度

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In beam shaping applications, the minimization of the number of necessary optical elements for the beam shaping process can benefit the compactness of the optical system and reduce its cost. The single freeform surface design for input wavefronts, which are neither planar nor spherical, is therefore of interest. In this work, the design of single freeform surfaces for a given zero-etendue source and complex target irradiances is investigated. Hence, not only collimated input beams or point sources are assumed. Instead, a predefined input ray direction vector field and irradiance distribution on a source plane, which has to be redistributed by a single freeform surface to give the predefined target irradiance, is considered. To solve this design problem, a partial differential equation (PDE) or PDE system, respectively, for the unknown surface and its corresponding ray mapping is derived from energy conservation and the ray-tracing equations. In contrast to former PDE formulations of the single freeform design problem, the derived PDE of Monge-Ampere type is formulated for general zero-etendue sources in Cartesian coordinates. The PDE system is discretized with finite differences, and the resulting nonlinear equation system is solved by a root-finding algorithm. The basis of the efficient solution of the PDE system builds the introduction of an initial iterate construction approach for a given input direction vector field, which uses optimal mass transport with a quadratic cost function. After a detailed description of the numerical algorithm, the efficiency of the design method is demonstrated by applying it to several design examples. This includes the redistribution of a collimated input beam beyond the paraxial approximation, the shaping of point source radiation, and the shaping of an astigmatic input wavefront into a complex target irradiance distribution. (C) 2017 Optical Society of America
机译:在光束整形应用中,用于光束整形过程的必要光学元件的数量的最小化可以有利于光学系统的紧凑性并降低其成本。因此,输入波前的单个自由形状表面设计既不是平面也不是球形的,因此是感兴趣的。在这项工作中,研究了给定零点源和复杂目标辐射的单个自由曲面的设计。因此,不仅假设准直输入光束或点源。相反,考虑了源平面上的预定义输入射线方向矢量场和辐照度分布,该源平面必须被单个自由形状表面重新分布以提供预定义的目标辐照度。为了解决该设计问题,分别用于未知表面及其相应的射线映射的部分微分方程(PDE)或PDE系统源自节能和射线跟踪方程。相反,与单个自由形状设计问题的前PDE配方相反,龟甲-Ampere型的衍生PDE被配制用于笛卡尔坐标中的一般零能源。 PDE系统采用有限差异离散化,并且通过根发现算法解决了所得到的非线性方程系统。 PDE系统的有效解决方案的基础构建了给定输入方向矢量场的初始迭代施工方法的引入,其使用具有二次成本函数的最佳质量传输。在对数值算法的详细描述之后,通过将其应用于几个设计示例来证明设计方法的效率。这包括重新分配了超出近似近似的准直输入光束,点源辐射的成形,以及散光输入波前的成形到复杂的目标辐照度分布中。 (c)2017年光学学会

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