Finding the polarizability of dielectric half-ellipse

IF 1.2 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Mehwish Nisar, Sidra Batool, Fabio Mangini, Henrik Wallén, Ari Sihvola, Fabrizio Frezza
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Abstract

AbstractThis article studies the electrostatic response of a two-dimensional dielectric half-ellipse. A semianalytical method is presented for solving the polarizability of a half-ellipse as a function of its relative permittivity. The polarizability depends on the direction of incident field, and therefore, it is written as a dyadic with two perpendicular components. These are called series and parallel polarizability, and they are solved separately. The solution requires a series expansion of the potential function, and the coefficients must be obtained numerically, through an inversion of a finite matrix equation. Numerical results are presented for the polarizability components of the half-ellipse as functions of its geometry and permittivity.KEYWORDS: Laplace equationpolarizabilityelliptic coordinatesPEC AcknowledgementsWe would like to thank Dr. Henrik Kettunen for his expertise and valuable contribution to the theoretical analysis, especially during the initial studies.Disclosure statementThe authors declare that they have no known competing interests that could have appeared to influence the work reported in this paper.Additional informationFundingThe research is funded by Sapienza University of Rome, Italy.Notes on contributorsMehwish NisarMehwish Nisar conducted this research and drafted the manuscript, Ari Sihvola and HenrikWallén contributed to the theoretical and numerical analysis as well as in finalizing the manuscript. Sidra Batool, Fabio Mangini and Fabrizio Frezza proofread the article.
电介质半椭圆极化率的计算
摘要本文研究了二维介质半椭圆的静电响应。提出一种求解半椭圆极化率随相对介电常数函数的半解析方法。极化率取决于入射场的方向,因此,它被写成具有两个垂直分量的二进线。这些被称为串联极化率和并联极化率,它们是分开求解的。求解需要对势函数进行级数展开,而系数必须通过有限矩阵方程的反演得到。给出了半椭圆极化率分量随几何形状和介电常数的函数的数值结果。我们要感谢Henrik Kettunen博士的专业知识和对理论分析的宝贵贡献,特别是在最初的研究中。披露声明作者声明,他们没有已知的可能影响本文报道的工作的竞争利益。该研究由意大利罗马Sapienza大学资助。mehwish Nisar进行了这项研究并起草了手稿,Ari Sihvola和henrikwallsamhan对理论和数值分析以及手稿的定稿做出了贡献。Sidra Batool, Fabio Mangini和Fabrizio Frezza校对文章。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Electromagnetic Waves and Applications
Journal of Electromagnetic Waves and Applications 物理-工程:电子与电气
CiteScore
3.60
自引率
7.70%
发文量
116
审稿时长
3.3 months
期刊介绍: Journal of Electromagnetic Waves and Applications covers all aspects of electromagnetic wave theory and its applications. It publishes original papers and review articles on new theories, methodologies, and computational techniques, as well as interpretations of both theoretical and experimental results. The scope of this Journal remains broad and includes the following topics: wave propagation theory propagation in random media waves in composites and amorphous materials optical and millimeter wave techniques fiber/waveguide optics optical sensing sub-micron structures nano-optics and sub-wavelength effects photonics and plasmonics atmospherics and ionospheric effects on wave propagation geophysical subsurface probing remote sensing inverse scattering antenna theory and applications fields and network theory transients radar measurements and applications active experiments using space vehicles electromagnetic compatibility and interferometry medical applications and biological effects ferrite devices high power devices and systems numerical methods The aim of this Journal is to report recent advancements and modern developments in the electromagnetic science and new exciting applications covering the aforementioned fields.
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