Electrodynamic models magnetized graphene diffraction gratings, based on the solution of integral equations for plasmonic anisotropic structures

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Abstract

Two methods have been used to solve the boundary value problem of diffraction of a plane electromagnetic wave on a diffraction grating of graphene strips in the presence of a magnetic field. In solving the obtained integral and paired adder equations, the Galerkin method was used with a basis in the form of Legendre and Hegenbauer polynomials. As a result, systems of linear algebraic equations with fast internal convergence were obtained. All matrix elements of the system are expressed explicitly.

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About the authors

A. M. Lerer

Southern Federal University

Author for correspondence.
Email: lerer@sfedu.ru
Russian Federation, Zorge St., 5, Rostov-on-Don, 344090

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