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Few-cycle optical pulses in negative index materials with dispersive permittivity and permeability

机译:具有分散介电常数和渗透性的负指数材料中的几个循环光脉冲

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摘要

Propagation of few-cycle optical pulses in nonlinear optical Kerr (cubic) and non-Kerr (quintic) type meta-materials, exhibiting frequency-dependent dielectric susceptibility and magnetic permeability, is considered. Considering the theory of electromagnetic waves from Maxwell's equations, a new nonlinear evolution equation describing the combined influences of higher-order nonlinearities and higher-order linear and nonlinear dispersions, appropriate for electromagnetic ultrashort pulse propagation in negative index materials, is derived beyond the slowly varying envelope approximation. A fully numerical simulation of the newly derived model equation, based on the lossy Drude model, shows the propagation of soliton-like stable few-cycle optical pulses under some parameter values. The change in types of self-steepening parameters induces structural changes of the initial input pulse, characterized by a soliton molecule made of either asymmetric or symmetric optical pulses. Also, the mutual balancing between Kerr and non-Kerr nonlinearities and higher-order dispersions is found to support the formation of soliton-molecules in both the normal and anomalous group velocity dispersion regimes. (C) 2020 Optical Society of America
机译:研究了具有频率依赖性介电常数和磁导率的非线性光学克尔(立方)型和非克尔(五次)型超材料中少周期光脉冲的传输。从麦克斯韦方程组出发,考虑电磁波理论,在慢变包络近似下,导出了一个新的非线性演化方程,该方程描述了高阶非线性、高阶线性和非线性色散的综合影响,适用于电磁超短脉冲在负折射率材料中的传播。基于有耗Drude模型对新导出的模型方程进行了全数值模拟,显示了在某些参数值下,类孤子稳定的几个周期光脉冲的传输。自陡峭参数类型的变化会引起初始输入脉冲的结构变化,其特征是由不对称或对称光脉冲构成的孤子分子。此外,在正常和反常的群速度色散区,克尔非线性和非克尔非线性以及高阶色散之间的相互平衡支持孤子分子的形成。(C) 2020美国光学学会

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