In this paper, a theoretical confirmation of the recently ( ) proposed generalized material-independent PML GMIPML absorbers, which was de¨oted to absorbing wa¨es propagating in arbitrary anisotropic dielectric and magnetic media, is carried out. The purpose of such a confirmation is not only to mak
Extension of the material-independent PML absorbers to arbitrary lossy anisotropic dielectric media
✍ Scribed by Antti Renko; An Ping Zhao
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 164 KB
- Volume
- 20
- Category
- Article
- ISSN
- 0895-2477
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✦ Synopsis
The material-independent perfectly matched layer ( ) MIPML , which is based on the idea proposed by Berenger, is a kind of ( absorber de¨oted to handling wa¨es propagating in complex such as ) anisotropy, dispersion, and nonlinearity materials. This paper presents an extension of the MIPML absorber to dielectric media consisting of both arbitrary loss and anisotropy. Numerical results indicate that the proposed MIPML absorbers work well for the materials with both relati¨e low-loss and high-loss cases.
📜 SIMILAR VOLUMES
To more accurately and effecti¨ely simulate wa¨es propa-( ) gating in nonlinear media with the finite-difference time-domain FDTD ( ) method, a material-independent perfectly matched layer MIPML absorber is proposed. Within this absorber, electric displacement D and magnetic field H are directly abs