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Mode-dependent characteristics of Rayleigh backscattering in weakly-coupled few-mode fiber

机译:弱耦合少模光纤中瑞利反向散射的模式相关特性

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摘要

We theoretically investigate the mode-dependent characteristics of Rayleigh backscattering arising in weakly-coupled few-mode fibers (FMFs). Based on the theory of Lorentz reciprocity and surface wave excitation, we derive a general analytical equation of excitation efficiency and power distribution of Rayleigh backscattering light among backward propagation modes under the condition of impulse response. Thus, we are able to characterize the Rayleigh backscattering of weakly-coupled FMF with arbitrary refractive index profile. As for the weakly-coupled FMF with a step-index profile, the power distribution ratio of individual modes in the Rayleigh backscattering light is mainly determined by the forward propagation mode. In particular, the backscattering mode with the same profile as the forward propagation one has the highest excitation efficiency. The FMF parameters have influence on the total backscattering power, but little effect on the mode power distribution ratio. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们从理论上研究了弱耦合少模光纤(FMFs)中产生的瑞利反向散射的模式相关特性。基于洛伦兹互易性和面波激励理论,推导了在脉冲响应条件下,瑞利反向散射光在反向传播模式之间的激发效率和功率分布的通用解析方程。因此,我们能够表征具有任意折射率分布的弱耦合FMF的瑞利反向散射。对于具有阶跃折射率分布的弱耦合FMF,瑞利后向散射光中各个模式的功率分配比主要取决于前向传播模式。特别地,与前向传播具有相同分布的后向散射模式具有最高的激发效率。 FMF参数对总反向散射功率有影响,但对模式功率分配比的影响很小。 (C)2015 Elsevier B.V.保留所有权利。

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