论文标题
非成像跨表面设计,用于塑形
Non-imaging metasurface design for collimated beam shaping
论文作者
论文摘要
非成像光镜可以将光强度从不连贯的来源塑造为所需的目标强度曲线,这对于在照明,太阳光浓度和光束塑造中应用非常重要。它们的表面曲率旨在确保能量从光源最佳传递到目标。此类镜头的性能直接与其不对称的自由式表面曲率有关,这对于制造很具有挑战性。通过使用光天线赋予空间依赖的相位延迟,元时间可以模仿任何表面曲率,而无需额外制造难度。结果,元信息非常适合实现非成像光学的光学,但是尚未建立非成像设计原理。在这里,我们通过根据最佳传输概念提出一种相位设计方法来连接非成像光学器件和元图光学的重要步骤。我们建立了一个理论框架,该框架可以通过元表面重新分布准直的光束到所需的输出强度曲线。最佳传输配方会导致跨表相相位剖面,该分析将所有能量从入射光束传输到输出光束,从而产生有效的光束成型过程。通过各种示例,我们表明我们的方法适合各种不同的输入和输出强度曲线。最后但并非最不重要的一点是,对元图进行了完整的字段模拟,以验证我们的相设计框架。
Non-imaging optical lenses can shape the light intensity from incoherent sources to a desired target intensity profile, which is important for applications in lighting, solar light concentration, and optical beam shaping. Their surface curvatures are designed to ensure optimal transfer of energy from the light source to the target. The performance of such lenses is directly linked to their asymmetric freeform surface curvature, which is challenging to manufacture. Metasurfaces can mimic any surface curvature without additional fabrication difficulty by imparting a spatially-dependent phase delay using optical antennas. As a result, metasurfaces are uniquely suited to realize non-imaging optics, but non-imaging design principles have not yet been established for metasurfaces. Here, we take an important step in connecting non-imaging optics and metasurface optics, by presenting a phase-design method for beam shaping based on the concept of optimal transport. We establish a theoretical framework that enables a collimated beam to be redistributed by a metasurface to a desired output intensity profile. The optimal transport formulation leads to metasurface phase profiles that transmit all energy from the incident beam to the output beam, resulting in an efficient beam shaping process. Through a variety of examples, we show that our approach accommodates a diverse range of different input and output intensity profiles. Last but not least, a full field simulation of a metasurface has been done to verify our phase-design framework.