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由捕获势支持的二次谐波产生介质中的涡旋光子弹

Vortical light bullets in second-harmonic-generating media supported by a trapping potential.

作者信息

Sakaguchi Hidetsugu, Malomed Boris A

机构信息

Department of Applied Science for Electronics and Materials, Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, Kasuga, Fukuoka 816-8580, Japan.

出版信息

Opt Express. 2013 Apr 22;21(8):9813-23. doi: 10.1364/OE.21.009813.

Abstract

We introduce a three-dimensional (3D) model of optical media with the quadratic (χ((2))) nonlinearity and an effective 2D isotropic harmonic-oscillator (HO) potential. While it is well known that 3D χ((2)) solitons with embedded vorticity ("vortical light bullets") are unstable in the free space, we demonstrate that they have a broad stability region in the present model, being supported by the HO potential against the splitting instability. The shape of the vortical solitons may be accurately predicted by the variational approximation (VA). They exist above a threshold value of the total energy (norm) and below another critical value, which determines a stability boundary. The existence threshold vanishes is a part of the parameter space, depending on the mismatch parameter, which is explained by means of the comparison with the 2D counterpart of the system. Above the stability boundary, the vortex features shape oscillations, periodically breaking its axisymmetric form and restoring it. Collisions between vortices moving in the longitudinal direction are studied too. The collision is strongly inelastic at relatively small values of the velocities, breaking the two colliding vortices into three, with the same vorticity. The results suggest a possibility of the creation of stable 3D optical solitons with the intrinsic vorticity.

摘要

我们引入了一种具有二次(χ((2)))非线性和有效二维各向同性谐振子(HO)势的光学介质三维(3D)模型。虽然众所周知,具有嵌入式涡度的三维χ((2))孤子(“涡旋光子弹”)在自由空间中是不稳定的,但我们证明,在当前模型中它们具有广阔的稳定区域,由HO势支撑以抵抗分裂不稳定性。涡旋孤子的形状可以通过变分近似(VA)准确预测。它们存在于总能量(范数)的阈值之上和另一个临界值之下,该临界值确定了一个稳定边界。存在阈值在参数空间的一部分中消失,这取决于失配参数,通过与系统的二维对应物进行比较来解释。在稳定边界之上,涡旋特征呈现形状振荡,周期性地破坏其轴对称形式并恢复它。还研究了沿纵向移动的涡旋之间的碰撞。在相对较小的速度值下,碰撞是强非弹性的,将两个碰撞的涡旋分裂成三个,涡度相同。结果表明存在创建具有固有涡度的稳定三维光学孤子的可能性。

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