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Dark-bright soliton interactions beyond the integrable limit

机译:深色孤独的孤独相互作用超出了可积极的限制

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In this work we present a systematic theoretical analysis regarding dark-bright solitons and their interactions, motivated by recent advances in atomic two-component repulsively interacting Bose-Einstein condensates. In particular, we study analytically via a two-soliton ansatz adopted within a variational formulation the interaction between two dark-bright solitons in a homogeneous environment beyond the integrable regime, by considering general inter- and intra-atomic interaction coefficients. We retrieve the possibility of a fixed point in the case where the bright solitons are out of phase. As the intercomponent interaction is increased, we also identify an exponential instability of the two-soliton state, associated with a subcritical pitchfork bifurcation. The latter gives rise to an asymmetric partition of the bright soliton mass and dynamically leads to spontaneous splitting of the bound pair. In the case of the in-phase bright solitons, we explain via parsing the analytical approximations and monitoring the direct dynamics why no such pair is identified, despite its prediction by the variational analysis.
机译:在这项工作中,我们提出了一种有关深色孤子的系统性分析及其相互作用,其最近的原子双组分驱动性伴随的Bose-Einstein缩合物的产生。特别是,我们通过考虑一般和内部互相相互作用系数,通过在变分制剂中采用的双孤独的ANSATZ进行分析地通过分解制剂中采用的两个暗明孤子之间的相互作用。在明亮的孤子超出阶段的情况下,我们检索固定点的可能性。随着互通的相互作用增加,我们还确定了与亚临界人间血液血液分叉相关的双孤子状态的指数不稳定性。后者产生明亮孤子质量的不对称分区,动态地导致绑定对的自发分裂。在同相明亮孤子的情况下,我们通过解析分析近似并监测直接动力学,为什么不识别不识别这样的对的原因,尽管其通过变分分析预测。

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