Increase of nonlinear signal distortions due to linear mode coupling in space division multiplexed systems

R. Kutluyarov, V. Bagmanov, V. Antonov, A. Sultanov, V. Lyubopytov
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引用次数: 7

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 Schrödinger 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.
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空分复用系统中线性模式耦合导致的非线性信号失真增加
本文主要分析了在低模区阶跃折射率光纤中空分复用(SDM)光通信中的线性和非线性模式耦合问题。线性模耦合是由光纤缺陷引起的,非线性模耦合是由克尔非线性引起的。因此,我们使用广义耦合非线性Schrödinger方程组(GCNLSE)来描述信号的传播。分析表明,线性模式耦合的存在会导致非线性信号畸变的增大。为了详细的研究,我们在具有螺旋相位前(涡旋模式)的空间模式的基础上,对波长为850nm的标准阶跃折射率光纤的GCNLSE进行了数值求解,并在1550nm处提供了五种空间模式的传播。仿真结果表明,线性模态耦合会导致非线性畸变的显著增加。在采用模式耦合线性补偿的SDM系统中,考虑这种现象是必要的,因为非线性畸变会大大降低补偿的有效性。
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