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Irradiance and phase control with two freeform surfaces using partial differential equations

机译:使用偏微分方程的两个自由曲面控制辐照度和相位

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A design method of two coupled freeform surfaces for the control of the irradiance and phase of the input and output wavefronts without the restriction to paraxiality or spherical/planar wavefronts is presented. It can be applied to the design of coupled lens surfaces, coupled mirrors or the combination of lens and mirror surfaces. The method is based on the description of the freeform surfaces through a system of coupled partial differential equations (PDE) for the first freeform surface and a ray-mapping projection. By calculating the required output wavefront between two predefined complex illumination patterns, we demonstrate that the presented algorithm can be applied directly to the calculation of a single optical element for the generation of two different irradiance distributions on separated target planes. Additionally, a manufacturing analysis of the corresponding freeform surfaces of a double lens system is provided. Furthermore, an extension of the design approach for a single freeform lenses with a predefined entrance surface from [J. Opt. Soc. Am. A 34, 1490-1499 (2017)] to single freeform lenses with a predefined exit surface is presentend. Limitations of the design method and possible improvements are discussed.
机译:提出了两个耦合自由曲面的设计方法,用于控制输入和输出波阵面的辐照度和相位,而不受近轴性或球面/平面波阵面的限制。它可以应用于耦合透镜表面,耦合镜或透镜与反射镜表面组合的设计。该方法基于通过针对第一自由曲面和射线映射投影的耦合偏微分方程(PDE)系统对自由曲面的描述。通过计算两个预定义的复杂照明模式之间所需的输出波前,我们证明了所提出的算法可以直接应用于单个光学元件的计算,以在分离的目标平面上生成两个不同的辐照度分布。另外,提供了双透镜系统的相应自由曲面的制造分析。此外,[J。选择。 Soc。是。现在提出一种具有预定出射面的自由曲面镜片,第34页,1490-1499(2017)。讨论了设计方法的局限性和可能的​​改进。

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