Evolution of circularly polarized pulse through a nonlinear chiral fiber

Gelmecha Demissie Jobir, Junqing Li, Qiang Zhang
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Abstract

Using Maxwell's curl equations and Post's constitutive relations, we obtained a generalized chiral nonlinear Schrodinger equation. This equation governs light transmission through a dispersive chiral fiber with combined action of chirality, nonlinearity, and dispersions. Simulations are based on the split-step Fourier beam propagation method and numerical results reveal the separate roles of dispersion and nonlinearity playing in the pulse evolution. For weak chirality, there is a possibility to modulate optical attenuation and nonlinearity which provides an additional dimension to balance the effects of dispersion and nonlinearity. These combined effects with the cooperation of chirality make temporal optical solitons for a single component which has an application in chiral fiber optic communications.
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圆偏振脉冲通过非线性手性光纤的演化
利用麦克斯韦旋度方程和波斯特本构关系,得到了广义的手性非线性薛定谔方程。这个方程控制了光通过色散手性光纤的传输,这种光纤具有手性、非线性和色散的综合作用。基于分步傅立叶光束传播方法进行了仿真,数值结果表明色散和非线性在脉冲演化中起着不同的作用。对于弱手性,有可能调制光衰减和非线性,这提供了一个额外的维度来平衡色散和非线性的影响。这些综合效应与手性的协同作用形成了单分量的时间光孤子,在手性光纤通信中具有应用价值。
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