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Effects of Long-Range Nonlinear Interactions in Double-Well Potentials

机译:双阱非线性相互作用对双阱电位的影响

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摘要

We consider the interplay of linear double-well-potential (DWP) structures and nonlinear longrange interactions of different types, motivated by applications to nonlinear optics and matter waves. We find that, while the basic spontaneous-symmetry-breaking (SSB) bifurcation structure in the DWP persists in the presence of the long-range interactions, the critical points at which the SSB emerges are sensitive to the range of the nonlocal interaction. We quantify the dynamics by developing a few-mode approximation corresponding to the DWP structure, and analyze the resulting system of ordinary differential equations and its bifurcations in detail. We compare results of this analysis with those produced by the full partial differential equation, finding good agreement between the two approaches. Effects of the competition between the local self-attraction and nonlocal repulsion on the SSB are studied too. A far more complex bifurcation structure involving the possibility for not only supercritical but also subcritical bifurcations and even bifurcation loops is identified in that case.
机译:我们考虑了线性双阱势能(DWP)结构与不同类型的非线性长程相互作用的相互作用,这是由于应用到非线性光学和物质波而引起的。我们发现,虽然DWP中的基本自发对称断裂(SSB)分叉结构在存在远程相互作用的情况下仍然存在,但SSB出现的临界点对非局部相互作用的范围敏感。我们通过开发与DWP结构相对应的几种模式近似来量化动力学,并详细分析了所得的常微分方程及其分岔系统。我们将该分析结果与完全偏微分方程所产生的结果进行比较,发现两种方法之间具有良好的一致性。还研究了局部自我吸引和非局部排斥之间的竞争对SSB的影响。在这种情况下,确定了一种更为复杂的分叉结构,不仅涉及超临界分叉,而且还涉及亚临界分叉甚至分叉回路。

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    Wang, C; Kevrekidis, PG;

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  • 年度 2011
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