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Vector solitons and dispersive waves in birefringent optical fibers

机译:双折射光纤中的矢量孤子和分散波

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We develop a general formalism for investigating the evolution of arbitrarily polarized short pulses inside a birefringent optical fiber. We use it to numerically study the formation of a dispersive wave inside fibers exhibiting medium to high birefringence when a short optical pulse is launched such that it propagates as a vector soliton. We also investigate the polarization evolution of both the vector soliton and dispersive wave generated by it. The results show that, while the polarization of the dispersive wave is controlled by linear birefringence of the fiber, polarization of the vector soliton is affected considerably by the nonlinear birefringence. The coupled nonlinear equations that we solve include both the Raman and Kerr nonlinearities. Moreover, they include the cross-polarization Raman terms that couple the orthogonally polarized components of the vector soliton. Polarization of the vector soliton is found to be affected considerably by the Raman nonlinearity in the case of medium birefringence. (c) 2018 Optical Society of America
机译:我们开发了一种普遍的形式主义,用于研究双折射光纤内任意偏振短脉冲的演变。我们使用它来数值研究在发射短光脉冲时表现出介质到高双折射的光纤内部的分散波的形成,使得其作为载体孤子传播。我们还研究了由其产生的载体孤子和分散波的极化演变。结果表明,在分散波的偏振通过纤维的线性双折射控制的同时,通过非线性双折射的载体孤子的偏振受到大大影响。我们解决的耦合非线性方程包括拉曼和克尔非线性。此外,它们包括耦合载体孤子的正交偏振成分的交叉极化拉曼术语。发现载体孤子的偏振被拉曼非线性在介质双折射的情况下受到显着影响。 (c)2018年光学学会

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