论文标题

中间相互作用状态中超电晶格旋转原子的歧管形成和穿越

Manifold formation and crossings of ultracold lattice spinor atoms in the intermediate interaction regime

论文作者

Fang, Xue-Ting, Dai, Zheng-Qi, Xiang, Di, Chen, Shou-Long, Li, Shao-Jun, Gao, Xiang, Zhu, Qian-Ru, Deng, Xing, Cao, Lushuai, Hu, Zhong-Kun

论文摘要

弱和强相互作用方案中的超声波旋转原子已经进行了广泛的研究,而中间状态中的行为却较少了解。我们在数值上研究了中间相互作用方案中有限大小的超速旋转原子集合,并揭示了特征态从强度从强度到中间状态的演变。在强烈的相互作用方案中,众所周知,低较低的特征谱谱呈现出良好的多势结构,并且能量差距可保护本征态的分类。在中间相互作用方面,发现特征态的分类得以保留,并且特征谱频谱变为Quasi-continuum,并且不同的歧管变为重叠。重叠诱导了封闭歧管之间的直接和避免的交叉,这取决于涉及交叉的本征态的组合对称性。得出了一个修改的T-J模型来描述中间方案中的低较低特征状态,该属性可以捕获歧管的形成和交叉。还研究了通过避免过境的状态准备。

Ultracold spinor atoms in the weak and strong interaction regime have received extensive investigations, while the behavior in the intermediate regime is less understood. We numerically investigate ultracold spinor atomic ensembles of finite size in the intermediate interaction regime, and reveal the evolution of the eigenstates from the strong to the intermediate regime. In the strong interaction regime, it has been well known that the low-lying eigenenergy spectrum presents the well-gaped multi-manifold structure, and the energy gaps protect the categorization of the eigenstates. In the intermediate interaction regime, it is found that the categorization of the eigenstates is preserved, and the eigenenergy spectrum become quasi-continuum, with different manifolds becoming overlapped. The overlapping induces both direct and avoided crossings between close-lying manifolds, which is determined by the combined symmetries of the eigenstates involved in the crossing. A modified t-J model is derived to describe the low-lying eigenstates in the intermediate regime, which can capture the formation and crossings of the manifolds. State preparation through the avoided crossings is also investigated.

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