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Analysis of soliton switching in dispersion-decreasing fiber couplers

机译:色散减小光纤耦合器中孤子切换的分析

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摘要

We present an analytical and numerical investigation of the propagation and the switching of fundamental solitons in a two-core nonlinear fiber coupler constructed with dispersion decreasing fiber (DDF) with a variational method using the Lagrangian density formulation. The analytical solutions were directly obtained from the coupled nonlinear Schrodinger equations. Our simulations considering six different profiles, linear, hyperbolic, exponential, logarithm, constant and Gaussian. The transmission characteristics, the critical energy and the compression factor of first order solitons obtained by the analytical procedure agree well with the results from numerical analysis. Twin core nonlinear directional couplers that include loss are also examined. The inclusion of loss results in the increase of the critical power of the coupler and broadening of the switched pulses, while the switching characteristics deteriorate. To compensate for this worse behavior, associated to the loss, we have investigated the effect of the DDF profile on the performance of the coupler. We show that appropriate shaping of the DDF profile is quite effective to recover, almost completely, the original switching behavior associated to the lossless situation. It is concluded that the hyperbolic dispersion profile is nearly optimum to the recovery of the lossless switching behavior.
机译:我们提出了一种拉格朗日密度公式,采用变分法,用色散减小光纤(DDF)构建的两芯非线性光纤耦合器中基本孤子的传播和转换的分析和数值研究。解析解直接从耦合的非线性Schrodinger方程获得。我们的模拟考虑了六个不同的轮廓,即线性,双曲线,指数,对数,常数和高斯。通过解析过程得到的一阶孤子的传输特性,临界能量和压缩系数与数值分析结果吻合良好。还研究了包括损耗的双芯非线性定向耦合器。损耗的包括导致耦合器的临界功率的增加和开关脉冲的展宽,而开关特性变差。为了补偿与损耗相关的这种较差的行为,我们研究了DDF轮廓对耦合器性能的影响。我们表明,对DDF配置文件进行适当的整形可以非常有效地几乎完全恢复与无损情况相关的原始切换行为。结论是,双曲线弥散分布对于恢复无损开关行为几乎是最佳的。

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