论文标题
非线性超材料波导中轻子弹的稳定
Stabilization of light bullets in nonlinear metamaterial waveguides
论文作者
论文摘要
在本文中,我们对非线性超材料波导中的时空孤子(轻子弹)进行了理论研究。我们的理论研究基于Lagrangian变异分析的制定,其合适的ANSATZ,然后是分裂型傅立叶方法,以确认结果以前的结果。给予特别强调的是,在负层波导的负和正指数方面稳定动力学的系统参数条件。与常规介质类似,单独使用Kerr型非线性的超材料中的三维(3D)轻子弹是高度不稳定的。但是,在超材料的负指数方面,在正常的分散体制平衡与散落的立方非线性和聚焦五重能非线性的情况下可能发生稳定的光子弹传播。与常规案例一样,在异常分散的情况下,稳定的动力学也可以观察到聚焦于立方非线性和在正指数方面的五分位非线性。为了测试超材料中3D轻子弹的孤子性质,我们还数字研究了两个轻子弹的碰撞动力学。该研究表明,时空的孤子在与另一个时空的孤子发生碰撞后可能发生了任何变化的旋转孢子,而没有任何变化。线性效应和非线性效应之间的不当平衡结果以扭曲的形式形成子弹分子,并在相互作用后具有大量能量,并且从长远来看,轻子弹的振荡会生长,子弹变成细丝。我们已经观察到超材料的负和正折射率方案中相同的碰撞动力学。
In this paper, we carry out a theoretical investigation on the propagation of spatio-temporal solitons (light bullets) in the nonlinear metamaterial waveguides. Our theoretical study is based on the formulation of Lagrangian variational analysis with a suitable ansatz followed by a split-step Fourier method in confirming the outcomes former numerically. A particular emphasis is given to obtain the conditions on the system parameters for stable dynamics in negative as well as positive index regimes of metamaterial waveguides. Similar to the conventional medium, the three-dimensional (3D) light bullets are highly unstable in metamaterials with the Kerr type nonlinearity alone. However, in the negative index regime of metamaterials, stable propagation of light bullets may occur in the normal dispersion regime balancing with defocusing cubic nonlinearity and focusing quintic nonlinearity. As in the conventional case, the stable dynamics is also observed in the case of anomalous dispersion with focusing cubic nonlinearity and defocusing quintic nonlinearity in the positive index regime. To test the solitonic nature of the 3D light bullets in the metamaterials, we also numerically investigate the collision dynamics of two light bullets. The study shows that the spatio-temporal soliton propagates without any change except perhaps some phase shift after a collision with another spatio-temporal soliton in competing cubic and quintic nonlinear metamaterials. The improper balancing between the linear and nonlinear effects results to form the bullet molecules in a distorted form with a large amount of energy after interaction and in the long run, oscillations of the light bullets grow and the bullets become filaments. We have observed the same collision dynamics in both the negative and positive refractive index regimes of the metamaterial.