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Superfluidity and interference pattern of ultracold bosons in optical lattices - art. no. 031602

机译:光学晶格中超冷玻色子的超流动性和干涉图样-艺术。没有。 031602

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摘要

We present a study of the superfluid properties of atomic Bose gases in optical lattice potentials using the Bose-Hubbard model. To do this, we use a microscopic definition of the superfluid fraction based on the response of the system to a phase variation imposed by means of twisted boundary conditions. We compare the superfluid fraction to other physical quantities, i.e., the interference pattern after ballistic expansion, the quasimomentum distribution, and number fluctuations. We have performed exact numerical calculations of all these quantities for small one-dimensional systems. We show that the superfluid fraction alone exhibits a clear signature of the Mott-insulator transition. Observables like the fringe visibility, which probe only ground-state properties, do not provide direct information on superfluidity and the Mott-insulator transition. [References: 16]
机译:我们目前使用Bose-Hubbard模型研究原子Bose气体在光学晶格势中的超流体性质。为此,我们根据系统对通过扭曲边界条件施加的相位变化的响应,使用超流体部分的微观定义。我们将超流体分数与其他物理量进行比较,即弹道扩展,准动量分布和数量波动后的干涉图样。对于小型一维系统,我们已经对所有这些量进行了精确的数值计算。我们表明,仅超流体部分就表现出莫特-绝缘子转变的明显特征。诸如条纹可见性之类的可观察性仅探测基态属性,而不能提供有关超流动性和莫特-绝缘子转变的直接信息。 [参考:16]

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