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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Soliton propagation of electromagnetic field vectors of polarized light ray traveling in a coiled optical fiber in Minkowski space with Bishop equations
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Soliton propagation of electromagnetic field vectors of polarized light ray traveling in a coiled optical fiber in Minkowski space with Bishop equations

机译:主体方程中螺旋光纤中偏振光射线电磁场矢量电磁场载体的孤子传播

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摘要

In this paper, we firstly obtain the evolution equations of the magnetic field and electric field vectors of polarized light ray propagating along a coiled optical fiber in Minkowski space. Then we define new kinds of binormal motions and new kinds of Hasimoto transformations to relate these evolution equations into the nonlinear Schrodinger's equation. During this procedure, we use a parallel adapted frame or more commonly known as Bishop frame to characterize the coiled optical fiber geometrically. We also propose perturbed solutions of the nonlinear Schrodinger's evolution equation that governs the propagation of solitons through the electric field (E) and magnetic field (M) vectors. Finally, we provide some numerical simulations to supplement the analytical outcomes.
机译:在本文中,我们首先在Minkowski空间中获得沿着螺旋光纤传播的磁场和电场向量的磁场和电场向量的进化方程。 然后,我们定义了新的二叉运动和新种有点转换,以将这些演化方程联系在非线性Schrodinger的等式中。 在此过程中,我们使用并联适配的帧或更常见称为主主帧,以几何上表征盘路光纤。 我们还提出了非线性Schrodinger的演化方程的扰动解,该方向通过电场(e)和磁场(M)向量来控制孤子的传播。 最后,我们提供了一些数值模拟,以补充分析结果。

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