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Mass-imbalanced Hubbard model in optical lattice with site-dependent interactions

机译:光栅中的群众近距离的喧嚣模型,具有站点依赖性相互作用

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We study the half-filled mass-imbalanced Hubbard model with spatially alternating interactions on an optical bipartite lattice by means of the dynamical mean-field theory. The Mott transition is investigated via the spin-dependent density of states and double occupancies. The phase diagrams for the homogeneous phases at zero temperature are constructed numerically. The boundary between metallic and insulating phases at zero temperature is analytically derived within the dynamical mean field theory using the equation of motion approach as the impurity solver. We found that the metallic region is reduced with increasing interaction anisotropy or mass imbalance. Our results are closely relevant to current researches in ultracold fermion experiments and can be verified through experimental observations.
机译:我们通过动力学平均场理论研究了通过动态平均场理论的光学二分格子上的空间交替相互作用来研究半填充的质量隆起的喧嚣模型。 通过旋转依赖性密度和双重占据来研究Mott转变。 在零温度下为均相相的相图进行数字地构建。 使用运动方法的等式作为杂质求解器,在零温度下的金属和绝缘相之间的边界在动态平均场理论内分析地导出。 我们发现,随着相互作用各向异性或大规模不平衡的增加,金属区域减少。 我们的结果与超克莱克铁缆实验中的当前研究密切相关,可以通过实验观察来验证。

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