Shadalou Shohreh, Cassarly William J, Suleski Thomas J
Opt Express. 2021 Oct 25;29(22):35755-35764. doi: 10.1364/OE.441304.
Tunable illumination with high uniformity can improve functionality for multiple application areas. In lighting applications, dynamic illumination has been achieved by applying axial movement to the source(s) or other optical elements, resulting in poor uniformity, or using a liquid lens that adds design complexity. Advances in high-precision manufacturing methods have facilitated the practical implementation of freeform optical components, enabling new design approaches for illumination systems. This paper explores the use of arrays of varifocal transmissive freeform Alvarez lenses for an LED-based illumination system. The design is initialized using paraxial geometrical optics concepts and then refined for a 1mm-by-1 mm white LED source through a multi-step optimization. Design procedures are discussed, and simulation results are presented for an example illumination system that varies from a small circular spot mode to a large square uniform flood mode through millimeter-scale lateral translation between the Alvarez lens arrays.
具有高均匀性的可调谐照明可以改善多个应用领域的功能。在照明应用中,通过对光源或其他光学元件进行轴向移动来实现动态照明,这会导致均匀性较差,或者使用增加设计复杂性的液体透镜。高精度制造方法的进步促进了自由曲面光学元件的实际应用,为照明系统带来了新的设计方法。本文探讨了将可变焦距透射式自由曲面阿尔瓦雷兹透镜阵列用于基于LED的照明系统。该设计首先使用近轴几何光学概念进行初始化,然后通过多步优化针对1mm×1mm的白色LED光源进行细化。讨论了设计过程,并给出了一个示例照明系统的模拟结果,该系统通过阿尔瓦雷兹透镜阵列之间的毫米级横向平移,从小圆形光斑模式变化到大型方形均匀泛光模式。