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An all-purpose three-dimensional finite element model for crossed-gratings

机译:通用光栅的三维有限元模型

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We demonstrate the accuracy of the Finite Element Method (FEM) to characterize an arbitrarily shaped crossed-grating in a multilayered stack illuminated by an arbitrarily polarized plane wave under oblique incidence. To our knowledge, this is the first time that 3D diffraction efficiencies are calculated using the FEM. The method has been validated using classical cases found in the literature. Finally, to illustrate the independence of our method towards the shape of the diffractive object, we present the global energy balance resulting of the diffraction of a plane wave by a lossy thin torus crossed-grating.
机译:我们证明了有限元方法(FEM)的准确性,该特性可以表征倾斜入射下任意偏振平面波照射的多层堆叠中任意形状的交叉光栅。据我们所知,这是首次使用FEM计算3D衍射效率。该方法已使用文献中发现的经典案例进行了验证。最后,为了说明我们的方法对衍射物体形状的独立性,我们介绍了由有损耗的薄圆环交叉光栅对平面波进行衍射所产生的整体能量平衡。

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