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Multiparticle Bound-State Formation following a Quantum Quench to the One-Dimensional Bose Gas with Attractive Interactions

机译:量子猝灭后一维玻色气体具有有吸引力的相互作用的多粒子束缚态形成。

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摘要

We consider quantum quenches from an ideal Bose condensate to the Lieb-Liniger model with an arbitrary attractive interaction strength. We focus on the properties of the stationary state reached at late times after the quench. Using recently developed methods based on integrability, we obtain an exact description of the stationary state for a large number of bosons. A distinctive feature of this state is the presence of a hierarchy of multiparticle bound states. We determine the dependence of their densities on interaction strength and obtain an exact expression for the stationary value of the local pair correlation g_2. We discuss ramifications of our results for cold atom experiments.
机译:我们考虑从理想的Bose冷凝物到具有任意吸引力的相互作用强度的Lieb-Liniger模型的量子猝灭。我们专注于淬火后后期达到稳态的性质。使用基于可积性的最近开发的方法,我们获得了大量玻色子的稳态的精确描述。该状态的显着特征是多粒子结合状态的层次结构的存在。我们确定它们的密度对相互作用强度的依赖性,并获得局部对相关性g_2的平稳值的精确表达式。我们讨论了冷原子实验结果的结果。

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