Propagation of electromagnetic waves in anisotropic magnetoelectric medium

In the article we consider porpagation and interaction of electromagnetic waves of different polarization, in anisotropic medium that is inhomogeneous along the Z axis with magnetoelectric effect of tetragonal, trigonal, and hexagonal symmetries are described by the structure of the matrix coeffici...

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Main Authors: S.K. Tleukenov, M.K. Zhukenov, N.A. Ispulov
Format: Article
Language:English
Published: Academician Ye.A. Buketov Karaganda University 2019-06-01
Series:Қарағанды университетінің хабаршысы. Физика сериясы
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Online Access:https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/295
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author S.K. Tleukenov
M.K. Zhukenov
N.A. Ispulov
author_facet S.K. Tleukenov
M.K. Zhukenov
N.A. Ispulov
author_sort S.K. Tleukenov
collection DOAJ
description In the article we consider porpagation and interaction of electromagnetic waves of different polarization, in anisotropic medium that is inhomogeneous along the Z axis with magnetoelectric effect of tetragonal, trigonal, and hexagonal symmetries are described by the structure of the matrix coefficients. The matricant structure of the original system of equations follows from the structure of coefficient matrix. In unlimited periodic structures, dispersion relations of electromagnetic waves are determined from the new modified conditions for the existence of non-trivial solutions which are the consequence of the matricant structure. Obvious analitical form of the matricants for the homogeneous anisotropic dielectric medium with magnetoelectric effects follows from the matricant structure. Analytical equations for homogeneous anisotropic medium with magnetoelectric effects allow one, in matrix setting, to obtain analytical solutions for the problem of reflection and refraction on the border of isotropic and anisotropic medium with magnetoelectric effect based on the matricant method. Initial relationships that describe electromagnetic wave propagation in anisotropic magnetoelectric medium are reduced to the system of linear homogeneous first order differential equations. The structure of the matricant is obtained. Dispersion equations of electromagnetic waves in periodic inhomogeneous medium with magnetoelectric effects are constructed. Averaged matricant describing the propagation of electromagnetic waves in homogeneous anisotropic medium with magnetoelectric medium are also constructed. Besides, the graphs of energy reflection coefficient of TE and TM electromagnetic waves and incident angle are plotted.
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issn 2518-7198
2663-5089
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publishDate 2019-06-01
publisher Academician Ye.A. Buketov Karaganda University
record_format Article
series Қарағанды университетінің хабаршысы. Физика сериясы
spelling doaj-art-920958df78304ed28be3e4f8e71afb492025-08-20T02:13:03ZengAcademician Ye.A. Buketov Karaganda UniversityҚарағанды университетінің хабаршысы. Физика сериясы2518-71982663-50892019-06-0194210.31489/2019ph2/29-34Propagation of electromagnetic waves in anisotropic magnetoelectric mediumS.K. TleukenovM.K. ZhukenovN.A. Ispulov In the article we consider porpagation and interaction of electromagnetic waves of different polarization, in anisotropic medium that is inhomogeneous along the Z axis with magnetoelectric effect of tetragonal, trigonal, and hexagonal symmetries are described by the structure of the matrix coefficients. The matricant structure of the original system of equations follows from the structure of coefficient matrix. In unlimited periodic structures, dispersion relations of electromagnetic waves are determined from the new modified conditions for the existence of non-trivial solutions which are the consequence of the matricant structure. Obvious analitical form of the matricants for the homogeneous anisotropic dielectric medium with magnetoelectric effects follows from the matricant structure. Analytical equations for homogeneous anisotropic medium with magnetoelectric effects allow one, in matrix setting, to obtain analytical solutions for the problem of reflection and refraction on the border of isotropic and anisotropic medium with magnetoelectric effect based on the matricant method. Initial relationships that describe electromagnetic wave propagation in anisotropic magnetoelectric medium are reduced to the system of linear homogeneous first order differential equations. The structure of the matricant is obtained. Dispersion equations of electromagnetic waves in periodic inhomogeneous medium with magnetoelectric effects are constructed. Averaged matricant describing the propagation of electromagnetic waves in homogeneous anisotropic medium with magnetoelectric medium are also constructed. Besides, the graphs of energy reflection coefficient of TE and TM electromagnetic waves and incident angle are plotted. https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/295anisotropic mediumelectromagnetic wavesmagnetoelectric effectmatricant methodreflectionrefraction of electromagnetic waves
spellingShingle S.K. Tleukenov
M.K. Zhukenov
N.A. Ispulov
Propagation of electromagnetic waves in anisotropic magnetoelectric medium
Қарағанды университетінің хабаршысы. Физика сериясы
anisotropic medium
electromagnetic waves
magnetoelectric effect
matricant method
reflection
refraction of electromagnetic waves
title Propagation of electromagnetic waves in anisotropic magnetoelectric medium
title_full Propagation of electromagnetic waves in anisotropic magnetoelectric medium
title_fullStr Propagation of electromagnetic waves in anisotropic magnetoelectric medium
title_full_unstemmed Propagation of electromagnetic waves in anisotropic magnetoelectric medium
title_short Propagation of electromagnetic waves in anisotropic magnetoelectric medium
title_sort propagation of electromagnetic waves in anisotropic magnetoelectric medium
topic anisotropic medium
electromagnetic waves
magnetoelectric effect
matricant method
reflection
refraction of electromagnetic waves
url https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/295
work_keys_str_mv AT sktleukenov propagationofelectromagneticwavesinanisotropicmagnetoelectricmedium
AT mkzhukenov propagationofelectromagneticwavesinanisotropicmagnetoelectricmedium
AT naispulov propagationofelectromagneticwavesinanisotropicmagnetoelectricmedium