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A supersolid phase of hardcore boson in square optical superlattice

机译:方形光学超晶格中的硬核玻色子的超氧化体阶段

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We have applied Quantum Monte Carlo technique to study the supersolid phase of hardcore bosons with nearest-neighbor repulsive interactions (NNRI) on square superlattice forming by an external potential. In a same NNRI model investigated by Batrouni et al. [Phys. Rev. Lett. 84, 1599 (2000)], there is no supersolid phase but phase separation. In this study, we have found the supersolid phase in the wide range of particle density with an assistance of the sufficient large external potential. Interestingly, a supersolid phase exists, on both the vacancy and interstitial sides. We have not found supersolid phase simultaneously existing with the crystals at any particle density. In the limit of a weak external potential strength, the system keeps all the features of the square lattice model which is similar to the model without an external potential. Increasing the external potential strength will induce the crystal phases at different filling factors commensurate with the external potential, i. e.. = 1/3 and 2/3 away from half filling. A strong external potential can even blow out the checkerboard crystal at half filling. The other possible relevance of these results to experiments on other similar systems such as the ultracold atom traping in optical lattice are discussed.
机译:我们应用量子蒙特卡罗技术研究了由外势形成的方形超晶格上具有最近邻排斥相互作用(NNRI)的硬核玻色子的超固体相。在巴鲁尼等人[Phys.Rev.Lett.841599(2000)]研究的同一NNRI模型中,没有超固相,只有相分离。在这项研究中,我们在足够大的外电势的帮助下,在宽的颗粒密度范围内发现了超固相。有趣的是,在空位侧和间隙侧都存在超固态相。在任何粒子密度下,我们都没有发现与晶体同时存在的超固相。在弱外电势强度的限制下,系统保持了正方形晶格模型的所有特征,这与无外电势的模型相似。增加外电位强度将在与外电位相称的不同填充因子下诱导晶相,即1/3和2/3远离半填充。强大的外部电势甚至可以在半填充时吹出棋盘格晶体。讨论了这些结果与其他类似系统实验的其他可能相关性,如光学晶格中的超冷原子陷阱。

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