Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips

Abstract In this paper, efficient analysis of the plane wave scattering by periodic arrays of magnetically-biased graphene strips (PAMGS) is performed using the semi-numerical, semi-analytical method of lines (MoL). In MoL, all but one independent variable is discretized to reduce a system of partia...

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Main Authors: Mehri Ziaee Bideskan, Keyvan Forooraghi, Zahra Atlasbaf
Format: Article
Language:English
Published: Nature Publishing Group 2021-04-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-86882-z
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spelling doaj-3566bc1b41e144d0ad296a34a9649e5b2021-04-11T11:30:06ZengNature Publishing GroupScientific Reports2045-23222021-04-0111111310.1038/s41598-021-86882-zMethod of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene stripsMehri Ziaee Bideskan0Keyvan Forooraghi1Zahra Atlasbaf2Department of Electrical and Computer Engineering, Tarbiat Modares UniversityDepartment of Electrical and Computer Engineering, Tarbiat Modares UniversityDepartment of Electrical and Computer Engineering, Tarbiat Modares UniversityAbstract In this paper, efficient analysis of the plane wave scattering by periodic arrays of magnetically-biased graphene strips (PAMGS) is performed using the semi-numerical, semi-analytical method of lines (MoL). In MoL, all but one independent variable is discretized to reduce a system of partial differential equations to a system of ordinary differential equations. Since the solution in one coordinate direction is obtained analytically, this method is time effective with a fast convergence rate. In the case of a multi-layered PAMGS, the governing equations of the problem are discretized concerning periodic boundary conditions (PBCs) in the transverse direction. The reflection coefficient transformation approach is then used to obtain an analytical solution in the longitudinal direction. Here, magnetically-biased graphene strips are modeled as conductive strips with a tensor surface conductivity which is electromagnetically characterized with tensor graphene boundary condition (TGBC). The reflectance and transmittance of different multi-layered PAMGS are carefully obtained and compared with those of other methods reported in the literature. Very good accordance between the results is observed which confirms the accuracy and efficiency of the proposed method.https://doi.org/10.1038/s41598-021-86882-z
collection DOAJ
language English
format Article
sources DOAJ
author Mehri Ziaee Bideskan
Keyvan Forooraghi
Zahra Atlasbaf
spellingShingle Mehri Ziaee Bideskan
Keyvan Forooraghi
Zahra Atlasbaf
Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
Scientific Reports
author_facet Mehri Ziaee Bideskan
Keyvan Forooraghi
Zahra Atlasbaf
author_sort Mehri Ziaee Bideskan
title Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
title_short Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
title_full Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
title_fullStr Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
title_full_unstemmed Method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
title_sort method of lines for analysis of plane wave scattering by periodic arrays of magnetically-biased graphene strips
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-04-01
description Abstract In this paper, efficient analysis of the plane wave scattering by periodic arrays of magnetically-biased graphene strips (PAMGS) is performed using the semi-numerical, semi-analytical method of lines (MoL). In MoL, all but one independent variable is discretized to reduce a system of partial differential equations to a system of ordinary differential equations. Since the solution in one coordinate direction is obtained analytically, this method is time effective with a fast convergence rate. In the case of a multi-layered PAMGS, the governing equations of the problem are discretized concerning periodic boundary conditions (PBCs) in the transverse direction. The reflection coefficient transformation approach is then used to obtain an analytical solution in the longitudinal direction. Here, magnetically-biased graphene strips are modeled as conductive strips with a tensor surface conductivity which is electromagnetically characterized with tensor graphene boundary condition (TGBC). The reflectance and transmittance of different multi-layered PAMGS are carefully obtained and compared with those of other methods reported in the literature. Very good accordance between the results is observed which confirms the accuracy and efficiency of the proposed method.
url https://doi.org/10.1038/s41598-021-86882-z
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AT zahraatlasbaf methodoflinesforanalysisofplanewavescatteringbyperiodicarraysofmagneticallybiasedgraphenestrips
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