首页> 外文期刊>European Physical Journal Plus >Lax pair, breather-to-soliton conversions, localized and periodic waves for a coupled higher-order nonlinear Schrodinger system in a birefringent optical fiber
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Lax pair, breather-to-soliton conversions, localized and periodic waves for a coupled higher-order nonlinear Schrodinger system in a birefringent optical fiber

机译:LAX对,通气对转换,用于双折射光纤中的耦合高阶非线性的耦合高阶非线性施罗德制品的定期波浪

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摘要

.A coupled higher-order nonlinear Schrodinger system, which describes the ultrashort pulses in a birefringent optical fiber, is analytically investigated. For the complex envelopes of the electric field in the fiber, we construct a Lax pair which is different from that in the existing literature, and derive out the corresponding first- and second-order breather solutions. We present the first- and second-order breather-to-soliton conversion conditions, related to the strength of the higher-order linear and nonlinear effects. We find that the strength affects the peak numbers of solitons, and see the multi-peak soliton, W-shaped soliton, M-shaped soliton, anti-dark soliton and two kinds of periodic waves. From the second-order breather solutions under the first-order breather-to-soliton conversion condition, interactions between the breather and a W-shaped soliton, an M-shaped soliton or periodic waves are given. From the second-order breather solutions under the second-order breather-to-soliton conversion conditions, we present the interactions between the two M-shaped solitons, the two anti-dark solitons, a W-shaped soliton and an M-shaped soliton, or a W-shaped soliton and two kinds of the periodic waves. Those results might provide certain assistance for the studies on the birefringent optical fibers.
机译:。结合高阶非线性Schrodinger系统,其描述了双折射光纤中的超短脉冲,进行了分析研究。对于光纤中电场的复杂信封,我们构建了一种与现有文献中不同的洛杉矶对,并导出相应的第一和二阶通气解决方案。我们介绍了第一个和二阶呼吸到孤独的转换条件,与高阶线性和非线性效应的强度相关。我们发现强度影响孤子的峰值数,看看多峰孤子,W形孤子,M形孤子,抗暗孤子和两种周期性波浪。根据一阶的呼吸到孤子转换条件下的二阶通气解决方案,给出了呼吸和W形孤子,M形孤子或周期性波之间的相互作用。从二阶呼吸到孤独的转换条件下的二阶通气解决方案,我们介绍了两个M形孤子,两个抗暗孤子,W形孤子和M形孤子之间的相互作用或W形孤子和两种周期性波浪。这些结果可能为双折射光纤的研究提供某些援助。

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