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Repulsive bound-atom pairs in an optical lattice with two-body interaction of nearest neighbors

机译:具有最近邻居的两体相互作用的光学晶格中的排斥性原子对

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摘要

Repulsively interacting particles in a periodic potential can form bound composite objects with long lifetimes, as has been observed experimentally [Winkler et al., Nature (London) 441, 853 (2006)1. In this paper, a complete two-particle solution of one-dimensional periodical potential was derived in a strong interaction regime, where the on-site approximation of a two-body interaction in the Bose-Hubbard model (BHM) is extended to include the interaction of nearest neighbors, which results in atom-pair hopping. The energy spectrum of the bound pair is drastically reshaped due to the pair-hopping term, and complex eigenenergy corresponding to metastable states is also found that has not been discovered in the usual BHM. When the absolute value of a center-of-mass quasimomentum wave vector is greater than a critical value (1K I > K,), two bound-pair solutions are found. Furthermore, the spatial and momentum distributions of the bound pair displays a crossover from dark to bright soliton-like solutions in the extended BHM. Our results reduce to that of the usual BHM in the weak interaction case.
机译:周期性电势中相互排斥的粒子可以形成具有长寿命的结合复合物,如通过实验观察到的[Winkler等人,Nature(London)441,853(2006)1。本文在强相互作用机制中推导了一维周期势的完整两粒子解决方案,其中将Bose-Hubbard模型(BHM)中两体相互作用的现场近似扩展为包括最近邻居的相互作用,导致原子对跳跃。由于成对跳变项的缘故,束缚对的能谱被彻底地重塑,并且还发现了对应于亚稳态的复杂本征能,这在通常的BHM中还没有发现。当质心动量波矢量的绝对值大于临界值(1K I> K)时,会找到两个束缚对解。此外,绑定对的空间和动量分布在扩展的BHM中显示出从暗到亮的类孤子解的交叉。在弱交互情况下,我们的结果减少到通常的BHM。

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