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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Effects of spatial inhomogeneities on the dynamics of cavity solitons in quadratically nonlinear media - art. no. 036610
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Effects of spatial inhomogeneities on the dynamics of cavity solitons in quadratically nonlinear media - art. no. 036610

机译:二次非线性介质中空间非均匀性对腔孤子动力学的影响没有。 036610

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We study the dynamics of cavity solitons under the influence of spatial inhomogeneities and derive generalized equations of motions. For perturbations large compared to the soliton size we find the modulus of the soliton velocity to be proportional to the gradient of the respective perturbation and that the proportionality coefficient changes sign when the soliton peak power drives the cavity beyond the resonance. For short scale perturbations solitons may be trapped at the extrema of the inhomogeneities. Shape and stability of these trapped solitons can be quasianalytically described by means of a perturbation theory. If both types of perturbations act solitons are either trapped or move depending on the strength of the respective perturbation. In the framework of a quasiparticle approach this dynamics is governed by a differential equation that holds for particle motion in a strongly viscous fluid under the action of a constant and harmonically varying force. We also show that in addition to acquiring a velocity the very existence conditions of the solitons (hysteresis curve) are affected by both kinds of perturbations. We find good quantitative agreement between our analytical results and numerical findings, which were obtained for a two wave interaction in a cavity filled with a quadratically nonlinear material. [References: 49]
机译:我们研究了空间不均匀性影响下的腔孤子的动力学,并推导了广义的运动方程。对于与孤子尺寸相比较大的摄动,我们发现孤子速度的模量与相应摄动的梯度成比例,并且当孤子峰值功率将腔驱动到共振之外时,比例系数会改变符号。对于小规模的扰动,孤子可能被困在不均匀的极值处。这些被困孤子的形状和稳定性可以通过微扰理论来定量描述。如果两种类型的扰动都起作用,则孤子将被捕获或移动,这取决于相应扰动的强度。在准粒子方法的框架中,此动力学由微分方程控制,该方程对于在强粘性流体中恒定且谐波变化的力的作用下的粒子运动成立。我们还表明,除了获得速度以外,孤子的存在条件(磁滞曲线)还受到两种摄动的影响。我们在分析结果和数值发现之间找到了良好的定量一致性,这是在充满二次非线性材料的空腔中通过两波相互作用获得的。 [参考:49]

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