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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Stable topological modes in two-dimensional Ginzburg-Landau models with trapping potentials
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Stable topological modes in two-dimensional Ginzburg-Landau models with trapping potentials

机译:具有陷阱势的二维Ginzburg-Landau模型中的稳定拓扑模式

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Complex Ginzburg-Landau (CGL) models of laser media (with cubic-quintic nonlinearity) do not contain an effective diffusion term, which makes all vortex solitons unstable in these models. Recently, it has been demonstrated that the addition of a two-dimensional periodic potential, which may be induced by a transverse grating in the laser cavity, to theCGLequation stabilizes compound (four-peak) vortices, but the most fundamental “crater-shaped” vortices (CSVs), alias vortex rings, which are essentially squeezed into a single cell of the potential, have not been found before in a stable form. In this work we report on families of stable compact CSVs with vorticity S = 1 in the CGL model with the external potential of two different types: an axisymmetric parabolic trap and the periodic potential. In both cases, we identify a stability region for the CSVs and for the fundamental solitons (S = 0). Those CSVs which are unstable in the axisymmetric potential break up into robust dipoles. All the vortices with S = 2 are unstable, splitting into tripoles. Stability regions for the dipoles and tripoles are identified, too. The periodic potential cannot stabilize CSVs with S ≥ 2 either; instead, families of stable compact square-shaped quadrupoles are found.
机译:激光介质的复杂Ginzburg-Landau(CGL)模型(具有三次立方非线性)不包含有效的扩散项,这会使所有涡旋孤子在这些模型中不稳定。最近,已经证明,可以通过激光腔中的横向光栅感应产生的二维周期性电势向CGL方程稳定化合物(四峰)涡旋,但最基本的“弹坑状”旋涡(CSV),本质上被压缩成单个电势单元的别名旋涡环,以前从未以稳定的形式被发现。在这项工作中,我们报告了CGL模型中涡度S = 1的稳定紧凑CSV族,其外部势有两种类型:轴对称抛物阱和周期性势。在这两种情况下,我们都确定了CSV和基本孤子的稳定区域(S = 0)。那些在轴对称电势中不稳定的CSV分解为坚固的偶极子。所有S = 2的旋涡都是不稳定的,分裂成三极。偶极和三极的稳定区域也被确定。周期性电势也无法稳定S≥2的CSV。相反,找到了稳定的紧凑型方形四极杆族。

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