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9781598290820

Perfectly Matched Layer - PML - for Computational Electromagnetics

by
  • ISBN13:

    9781598290820

  • ISBN10:

    1598290827

  • Format: Paperback
  • Copyright: 2007-03-01
  • Publisher: Morgan & Claypool

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Summary

This lecture presents the perfectly matched layer (PML) absorbing boundary condition (ABC) used to simulate free space when solving the Maxwell equations with such finite methods as the finite difference time domain (FDTD) method or the finite element method. The frequency domain and the time domain equations are derived for the different forms of PML media, namely the split PML, the CPML, the NPML, and the uniaxial PML, in the cases of PMLs matched to isotropic, anisotropic, and dispersive media. The implementation of the PML ABC in the FDTD method is presented in detail. Propagation and reflection of waves in the discretized FDTD space are derived and discussed, with a special emphasis on the problem of evanescent waves. The optimization of the PML ABC is addressed in two typical applications of the FDTD method: first, wave-structure interaction problems, and secondly, waveguide problems. Finally, a review of the literature on the application of the PML ABC to other numerical techniques of electromagnetics and to other partial differential equations of physics is provided. In addition, a software package for computing the actual reflection from a FDTD-PML is provided. It is available at http://www.morganclaypool.com/page/berenger.

Table of Contents

The requirements for the simulation of free space and a review of existing absorbing boundary conditionsp. 5
The two-dimensional perfectly matched layerp. 13
Generalizations and interpretations of the perfectly matched layerp. 29
Time domain equations for the PML mediump. 49
The PML ABC for the FDTD methodp. 63
Optmization of the PML ABC in wave-structure interaction and waveguide problemsp. 89
Some extensions of the PML ABCp. 107
Table of Contents provided by Blackwell. All Rights Reserved.

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