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A method for approximate computation of waveguide scattering matrices

机译:一种近似计算波导散射矩阵的方法

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A waveguide occupies a domain in an (n + 1)-dimensional Euclidean space which has several cylindrical outlets to infinity. Three classes of waveguides are considered: those of quantum theory, of electromagnetic theory, and of elasticity theory, described respectively by the Helmholtz operator, the Maxwell system, and the system of equations for an elastic medium. It is assumed that the coefficients of all problems stabilize exponentially at infinity, to functions that are independent of the axial variable in the corresponding cylindrical outlet. Each row of the scattering matrix is given approximately by minimizing a quadratic functional. This functional is constructed by use of an elliptic boundary value problem in a bounded domain obtained by cutting the cylindrical outlets of the waveguide at some distance R. The existence and uniqueness of a solution is proved for each of the three types of waveguides. The minimizers converge exponentially fast as functions of R, as R -> infinity, to rows of the scattering matrix.
机译:波导占据(n + 1)的欧几里德空间中的域,其具有几个圆柱形插座到无穷大。考虑了三类波导:量子理论,电磁理论和弹性理论的普通理论,由Helmholtz操作员,Maxwell系统和弹性介质的方程系统分别描述。假设所有问题的系数在无穷远地呈指数稳定,到与相应的圆柱出口中的轴向变量无关的功能。通过最小化二次功能,给出散射矩阵的每一行。该功能通过在通过在某些距离R中切割波导的圆柱形插座而获得的有界域中的椭圆边值问题构成。证明了三种类型的波导中的每一个的存在和唯一性。最小化器作为r,作为r - >无穷大的函数呈指数迅速汇集到散射矩阵的行。

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