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A new method to obtain the phase for designing highly efficient metasurface devices: Local Phase Method

机译:一种新方法,用于设计高效元质面积设备的阶段:局部相位方法

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Metasurfaces have emerged as a powerful and versatile paradigm for making many optical devices especially optical lenses. However, the approach usually used to engineer metasurface devices assumes that neighboring elements are identical. This is not the case in general and the approach thus prevents the optimization of devices that operate away from their optimum. We propose a versatile numerical method that we call local phase method (LPM) to obtain the phase of each element within the metasurface while accounting for near-field coupling with different neighbors. The proposed local phase method paves the way to highly efficient metasurface devices including, but not limited to, deflectors, high numerical aperture concentrators, lenses, cloaks, and modulators.
机译:Metasurfaces已成为一种强大而多功能的范例,用于制作许多光学器件尤其是光学镜头。然而,通常用于工程师的方法是假设相邻元件是相同的。一般来说,这不是这种情况,因此该方法防止了远离最佳操作的设备的优化。我们提出了一种多功能的数值方法,我们称之为局部阶段方法(LPM),以获得质量表面内的每个元素的阶段,同时占与不同邻居的近场耦合。所提出的局部相位方法铺设了高效的元表面装置,包括但不限于偏转器,高数孔径集中器,透镜,斗篷和调制器。

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