Numerical Methods for Modeling Metasurface with Gstc
暫譯: 使用Gstc建模超表面的數值方法
Ren, Qiang, Wu, Kaiming, Liu, Na
- 出版商: Wiley
- 出版日期: 2026-09-22
- 售價: $4,780
- 貴賓價: 9.5 折 $4,541
- 語言: 英文
- 頁數: 256
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 1394244290
- ISBN-13: 9781394244294
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相關分類:
電磁學 Electromagnetics
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相關主題
商品描述
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:
- The basics of metasurfaces, the GSTC technique, and computational electromagnetics methods
- Metasurfaces modeling, covering media homogenization techniques, GSTC theory, and the susceptibility synthesis method
- Methods to simulate steady or transient responses of both planar and curved metasurfaces
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.
商品描述(中文翻譯)
使用廣義表面轉換條件的電磁超表面當前建模方法介紹
使用GSTC的超表面數值建模方法 提供了一本系統且深入的專著,探討超表面的數值建模方法,並徹底探索各種數值方法,涵蓋不僅是頻域中的方法,還包括在時間域中結合廣義表面轉換條件(GSTC)的方法。接著介紹主流的全波計算電磁方法,包括有限差分頻域法(FDFD)、矩量法(MoM)、有限元素法(FEM)、光譜元素法(SEM)、有限差分時間域法(FDTD)以及不連續Galerkin時間域法(DGTD),並將GSTC與這些數值方法結合。精心設計的範例顯示,GSTC等價是一種快速且準確的超表面分析工具。
由一組高素質的作者撰寫,使用GSTC的超表面數值建模方法 還包括以下資訊:
- 超表面的基本概念、GSTC技術及計算電磁方法
- 超表面建模,涵蓋介質均質化技術、GSTC理論及易感性合成方法
- 模擬平面和曲面超表面穩態或瞬態響應的方法
使用GSTC的超表面數值建模方法 是學術研究人員和電磁學、光學及應用物理工程師的重要最新參考資料,適合相關學科的研究生及高年級本科生使用。
作者簡介
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.
作者簡介(中文翻譯)
任強博士是中國北京航空航天大學電子與信息工程學院的「百優」副教授。他是Wiley-IEEE Press出版的書籍《時域計算電磁方法的進展》(2022年12月)的共同作者。
吳凱明目前正在中國北京航空航天大學攻讀博士學位。
劉娜博士是中國廈門大學電磁與聲學研究所的副教授。
蔡國雄博士是中國廈門大學電磁與聲學研究所的副教授。