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利用单线部分反演分析石墨烯覆盖的圆形介质线集合的波散射:衍射辐射情况。

Wave scattering from graphene-covered circular dielectric wire collections analysed using the single-wire part inversion: diffraction radiation case.

作者信息

Herasymova Dariia O, Natarov Denys M, Lucido Mario, Nosych Oleksandr I, Dukhopelnykov Sergii V

机构信息

Laboratory of Micro and Nano Optics, O Ya Usikov Institute for Radiophysics and Electronics National Academy of Sciences of Ukraine, Kharkiv, Ukraine.

Department of Electrical and Information Engineering "Maurizio Scarano", University of Cassino and Southern Lazio, Cassino 03043, Italy.

出版信息

Philos Trans A Math Phys Eng Sci. 2025 Aug 14;383(2303):20240344. doi: 10.1098/rsta.2024.0344.

Abstract

We consider infrared (IR)-range diffraction radiation (DR) from finite configurations of circular graphene-covered dielectric nanowires excited by the density-modulated beam of charged particles. The beam velocity is assumed constant, and its field in the free space is considered as the incident one. The characterization of graphene employs the quantum-theory Kubo formalism and the resistive-sheet boundary conditions involving the frequency-dependent graphene surface impedance. To transform the problem into a well-conditioned algebraic equation for the field expansion coefficients, we use the separation of variables in the local coordinates and the addition theorem for the cylindrical functions. This leads to explicit inversion of the single-wire part of the problem, i.e. to the regularization, provides easy control of the accuracy and enables us to study fine resonance effects associated with the natural modes of the wire collections as open resonators.This article is part of the theme issue 'Analytically grounded full-wave methods for advances in computational electromagnetics'.

摘要

我们研究了由带电粒子密度调制束激发的圆形石墨烯覆盖介质纳米线有限构型产生的红外(IR)波段衍射辐射(DR)。假设束流速度恒定,其在自由空间中的场被视为入射场。石墨烯的表征采用量子理论的久保形式主义以及涉及频率相关石墨烯表面阻抗的电阻片边界条件。为了将问题转化为关于场展开系数的条件良好的代数方程,我们在局部坐标中使用变量分离和圆柱函数的加法定理。这导致问题的单线部分的显式反演,即正则化,便于控制精度,并使我们能够研究与作为开放谐振器的线集合的自然模式相关的精细共振效应。本文是“计算电磁学进展的解析基础全波方法”主题特刊的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0dc/12351300/21a0b99595e2/rsta.2024.0344.f001.jpg

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