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- W2770593453 abstract "This paper is focused on the analysis of linear and nonlinear mode coupling in space division multiplexed (SDM) optical communications over step-index fiber in few-mode regime. Linear mode coupling is caused by the fiber imperfections, while the nonlinear coupling is caused by the Kerr-nonlinearities. Therefore, we use the system of generalized coupled nonlinear Schrodinger equations (GCNLSE) to describe the signal propagation. We analytically show that the presence of linear mode coupling may cause increasing of the nonlinear signal distortions. For the detailed study we solve GCNLSE numerically for the standard step index fiber at the wavelength of 850 nm in the basis of spatial modes with helical phase front (vortex modes) and for a special kind of few-mode fiber with enlarged core, providing propagation of five spatial modes at 1550 nm. Simulation results confirm that the linear mode coupling may lead to a significant increase of the nonlinear distortions. It is necessary to take this phenomenon into account in SDM systems with linear compensation of mode coupling, because the nonlinear distortions may sufficiently decrease the effectiveness of the compensation." @default.
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- W2770593453 date "2017-09-01" @default.
- W2770593453 modified "2023-09-25" @default.
- W2770593453 title "Increase of nonlinear signal distortions due to linear mode coupling in space division multiplexed systems" @default.
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- W2770593453 doi "https://doi.org/10.1109/sibircon.2017.8109889" @default.
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