光梯中双极玻色子的拓扑浮相

Henning Korbmacher, Gustavo A. Domínguez-Castro, Mateusz Łącki, Jakub Zakrzewski, Luis Santos
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引用次数: 0

摘要

光梯中的超冷双极性硬核玻色子为各向异性 XXZ 自旋梯的量子模拟提供了令人兴奋的可能性。我们发现,沿梯级引入倾斜会导致丰富的单位填充相图。特别是,对于足够强的偶极强度,偶极相互作用的长程尾部与倾斜之间的相互作用会导致量子浮相的出现,这是一个具有不相称密度-密度相关性的临界相。有趣的是,对纠缠谱的研究表明,浮相是拓扑的,它构成了晶体熔化成拓扑霍尔丹相的中间无间隙阶段。这种双极 XXZ 梯子中拓扑浮相的新情况可以在正在进行的实验中进行研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topological floating phase of dipolar bosons in an optical ladder
Ultracold dipolar hard-core bosons in optical ladders provide exciting possibilities for the quantum simulation of anisotropic XXZ spin ladders. We show that introducing a tilt along the rungs results in a rich phase diagram at unit filling. In particular, for a sufficiently strong dipolar strength, the interplay between the long-range tail of the dipolar interactions and the tilting leads to the emergence of a quantum floating phase, a critical phase with incommensurate density-density correlations. Interestingly, the study of the entanglement spectrum, reveals that the floating phase is topological, constituting an intermediate gapless stage in the melting of a crystal into a gapped topological Haldane phase. This novel scenario for topological floating phases in dipolar XXZ ladders can be investigated in on-going experiments.
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