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PMLC: A perfectly matched layer collimator and its applications to time and frequency domain numerical techniques

机译:PMLC:完美匹配的准直仪及其在时域和频域数值技术中的应用

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摘要

Several types of absorbing boundary conditions and simple matched absorbers, employed for mesh truncation in time and frequency domain numerical techniques (FDTD, FEM) work well for normally incident waves. However, their performance at other angles of incidence is often deemed unacceptable, motivating their replacement by perfectly matched layers. We propose a medium that can collimate incident waves, producing almost normally incident plane waves that can be readily absorbed even by a low order absorbing boundary condition such as Mur's. This perfectly matched layer collimator (PMLC) is a lossless, uniaxially anisotropic medium; its numerical implementation is much simpler than that of the conventional PML. Numerical results demonstrate the effectiveness of this medium as a means of rendering the performance of a first order absorbing boundary condition comparable to that of a PML.
机译:用于网格截断的几种类型的吸收边界条件和简单的匹配吸收器,用于时间和频域数值技术(FDTD,FEM)适用于正常入射波。然而,它们在其他发病率方面的性能通常被认为是不可接受的,激励他们通过完全匹配的层替代。我们提出了一种可以准直的波浪的介质,其产生几乎通常入射的平面波,即使通过诸如MUR的低阶吸收边界条件,也可以容易地吸收。这种完美匹配的层准直器(PMLC)是无损,单轴各向异性介质;其数值实现比传统PML更简单。数值结果证明了这种介质的有效性,作为使得与PML的第一阶的第一个阶的性能的性能的方法。

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