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A boundary integral equation method in short-wavelength-to-period diffraction on multilayer 1D gratings and rough mirrors

机译:多层1D光栅和粗镜短波长到周期衍射中的边界整体方程方法

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Diffraction problems by 1D multilayer structures having arbitrary border profiles including edges are considered at smallest wavelength-to-period ratios. The integral equation theory is so flexible that one can point out a few areas of its modifiability. In this work special attention is paid to physical models and low-level details, as well as to the generalization of the power balance criterion for the case of absorbing gratings. In the case of shallow gratings and mirrors, introducing speed-up terms produces an adverse numerical effect because of the ensuing uncontrolled growth of coefficients in analytically improved asymptotic estimations.
机译:由包括边缘的任意边界轮廓的1D多层结构的衍射问题被认为是最小波长到周期比的。整体方程理论如此灵活,即人们可以指出其变形性的几个领域。在这项工作中,特别关注物理模型和低级细节,以及对吸收光栅的情况的电力平衡标准的泛化。在浅光栅和镜子的情况下,引入速度术语产生不良数效果,因为在分析改善的渐近估计中随后的系数增长是不受控制的增长。

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