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Introduction to current modeling methods for electromagnetic metasurfaces using the generalized sheet transition condition
Numerical Methods for Modeling Metasurface with GSTC provides a systemic and deep monograph of numerical modeling approaches for metasurfaces and thoroughly explores various numerical methods, encompassing not only those in the frequency domain, but also those in the time domain that incorporate generalized sheet transition conditions (GSTCs). It then introduces the mainstream full-wave computational electromagnetic method, including finite-difference frequency-domain method (FDFD), method of moments (MoM), finite element method (FEM), spectral element method (SEM), finite-difference time-domain method (FDTD), and discontinue Galerkin time-domain method (DGTD). And the incorporation of GSTC with these numerical methods. Well-designed examples show that the GSTC equivalence is a quick and accurate tool for metasurface analysis.
Written by a team of highly qualified authors, Numerical Methods for Modeling Metasurface with GSTC also includes information on:
Numerical Methods for Modeling Metasurface with GSTC is an essential up-to-date reference on the subject for academic researchers and engineers in electromagnetics, optics, and applied physics and graduate and senior undergraduate students in related programs of study.
Author: Qiang Ren,Kaiming Wu,Na Liu
ISBN-10: 1394244290
ISBN-13: 9781394244294
Publisher: Wiley-IEEE Press
Language: English
Published: 07/27/2026
Pages: 272
Format: Hardcover
Qiang Ren, PhD, is an "Excellent Hundred" Associate Professor at the School of Electronics and Information Engineering in Beihang University, China. He is a co-author of the Wiley-IEEE Press title Advances in Time-Domain Computational Electromagnetic Methods (Dec 2022).
Kaiming Wu is currently pursuing the PhD degree at Beihang University, China.
Na Liu, PhD, is an Associate Professor with the Institute of Electromagnetics and Acoustics at Xiamen University, China.
Guoxiong Cai, PhD, is an Associate Professor with the Institute of Electromagnetics and Acoustics at Xiamen University, China.
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