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Numerical solving of a new class of canonical problems and their application

机译:一类新的典型问题的数值求解及其应用

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The method of integral equations and representation of unknown surface currents as a sum of "uniform" and "nonuniform" components are used to solve a very large class of diffraction problems, such as dielectric, multilayered, partially coated, and other objects, including the structures with surface waves. They can be used as canonical problems to considerably extend the field of application of the geometrical and physical theories of diffraction. A simple example (diffraction by a dielectric slab of finite width) is considered in order to illustrate the implementation and validity of our hybrid approach where the possibilities of both numerical and asymptotic methods are combined. The diffraction of the second order is taken into account. It is shown by comparison with the direct numerical calculations that the contribution of the third- and higher-order diffraction is too small and practically may be neglected.
机译:积分方程法和将未知表面电流表示为“均匀”和“非均匀”分量之和的方法用于解决非常大的一类衍射问题,例如电介质,多层,部分涂层和其他物体,包括表面波的结构。它们可以用作规范问题,以大大扩展衍射的几何和物理理论的应用领域。为了说明我们的混合方法的实现和有效性,考虑了一个简单的例子(有限宽度的介质板的衍射),在混合方法中,数值方法和渐近方法的可能性都结合了起来。考虑到二阶衍射。通过与直接数值计算的比较表明,三阶和更高阶衍射的贡献太小,实际上可以忽略不计。

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