Electromagnetic scattering by a chiral grating in a homogeneous chiral environment and its finite element method with perfectly matched absorbing layers
Numer. Math. J. Chinese Univ. (English Ser.)(English Ser.) 15 (2006), pp. 164-179
Published online: 2006-05
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@Article{NM-15-164,
author = {D. Zhang and F. Ma},
title = {Electromagnetic scattering by a chiral grating in a homogeneous chiral environment and its finite element method with perfectly matched absorbing layers},
journal = {Numerical Mathematics, a Journal of Chinese Universities},
year = {2006},
volume = {15},
number = {2},
pages = {164--179},
abstract = {
The scattering of time-harmonic electromagnetic waves propagating
in a homogeneous chiral environment by a chiral grating is
studied. The problem is simplified to a two-dimensional scattering
problem, and the existence and the uniqueness of solutions are
discussed by a variational approach. The diffraction problem is
solved by a finite element method with perfectly matched absorbing
layers. Our computational experiments indicate that the method is
efficient.
},
issn = {},
doi = {https://doi.org/},
url = {http://global-sci.org/intro/article_detail/nm/8025.html}
}
TY - JOUR
T1 - Electromagnetic scattering by a chiral grating in a homogeneous chiral environment and its finite element method with perfectly matched absorbing layers
AU - D. Zhang & F. Ma
JO - Numerical Mathematics, a Journal of Chinese Universities
VL - 2
SP - 164
EP - 179
PY - 2006
DA - 2006/05
SN - 15
DO - http://doi.org/
UR - https://global-sci.org/intro/article_detail/nm/8025.html
KW -
AB -
The scattering of time-harmonic electromagnetic waves propagating
in a homogeneous chiral environment by a chiral grating is
studied. The problem is simplified to a two-dimensional scattering
problem, and the existence and the uniqueness of solutions are
discussed by a variational approach. The diffraction problem is
solved by a finite element method with perfectly matched absorbing
layers. Our computational experiments indicate that the method is
efficient.
D. Zhang and F. Ma. (2006). Electromagnetic scattering by a chiral grating in a homogeneous chiral environment and its finite element method with perfectly matched absorbing layers.
Numerical Mathematics, a Journal of Chinese Universities. 15 (2).
164-179.
doi:
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