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Superfluid density in a two-dimensional model of supersolid

机译:二维超固体模型中的超流体密度

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We study in 2-dimensions the superfluid density of periodically modulated states in the framework of the mean-field Gross-Pitaevski? model of a quantum solid. We obtain a full agreement for the superfluid fraction between a semi-theoretical approach and direct numerical simulations. As in 1-dimension, the superfluid density decreases exponentially with the amplitude of the particle interaction. We discuss the case when defects are present in this modulated structure. In the case of isolated defects (e.g. dislocations) the superfluid density only shows small changes. Finally, we report an increase of the superfluid fraction up to 50% in the case of extended macroscopical defects. We show also that this excess of superfluid fraction depends on the length of the complex network of grain boundaries in the system.
机译:在二维场中,我们在平均场Gross-Pitaevski框架内研究周期调制态的超流体密度。量子固体模型。我们在半理论方法和直接数值模拟之间获得了对超流体分数的完全同意。与一维一样,超流体密度随粒子相互作用的幅度呈指数下降。我们讨论了这种调制结构中存在缺陷的情况。在孤立的缺陷(例如位错)的情况下,超流体密度仅显示出很小的变化。最后,我们报告了在宏观缺陷扩大的情况下,超流体分数最多增加了50%。我们还表明,这种超流体分数的过量取决于系统中晶界复杂网络的长度。

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