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10th International Symposium on Optics and Biophotonics September 26-30, 2022, Saratov, Russia
Theoretical and Mathematical Physics
Adiabatic guided modes of a three-layer integral optical waveguide
D. V. Divakovab, K. P. Lovetskiia, A. L. Sevastyanovc, A. A. Tyutyunnikab a Russian Peoples’ Friendship University, Moscow, Russia
b Joint Institute for Nuclear Research, Dubna, Moscow region
c National Research University Higher School of Economics, Moscow
Abstract:
The numerical solution of the problem of guided propagation of polarized light in a smooth junction of a planar waveguide is considered. Within the framework of the model of adiabatic guided modes, the system of Maxwell equations is reduced to a system of four ordinary differential equations and two algebraic equations for six components of the electromagnetic field in the zeroth approximation and the same number of equations in the first approximation. The multilayer structure of waveguides makes it possible to reduce the problem to a homogeneous system of linear algebraic equations, whose nontrivial solvability condition yields the dispersion equation. Auxiliary eigenvalue problems for describing the adiabatic modes of the waveguide are solved.
Keywords:
smoothly irregular integrated-optical multilayer waveguides, eigenvalue and eigenvector problems, single-mode propagation of adiabatic waveguide modes.
Received: 07.02.2023 Revised: 07.02.2023 Accepted: 07.02.2023
Citation:
D. V. Divakov, K. P. Lovetskii, A. L. Sevastyanov, A. A. Tyutyunnik, “Adiabatic guided modes of a three-layer integral optical waveguide”, Zhurnal Tekhnicheskoi Fiziki, 93:4 (2023), 453–457
Linking options:
https://www.mathnet.ru/eng/jtf6967 https://www.mathnet.ru/eng/jtf/v93/i4/p453
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