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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Phase separation and competition of superconductivity and magnetism in the two-dimensional Hubbard model: From strong to weak coupling
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Phase separation and competition of superconductivity and magnetism in the two-dimensional Hubbard model: From strong to weak coupling

机译:二维Hubbard模型中超导和磁性的相分离和竞争:从强耦合到弱耦合

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摘要

Cooperation and competition between the antiferromagnetic, d-wave superconducting, and Mott-insulating states are explored for the two-dimensional Hubbard model including nearest and next-nearest-neighbor hop-pings at zero temperature. Using the variational cluster approach with clusters of different shapes and sizes up to 10 sites, it is found that the doping-driven transition from a phase with microscopic coexistence of antifer-romagnetism and superconductivity to a purely superconducting phase is discontinuous for strong interaction and accompanied by phase separation. At half-filling the system is in an antiferromagnetic Mott-insulating state with vanishing charge compressibility. Upon decreasing the interaction strength U below a certain critical value of roughly U_c ~ 4 (in units of the nearest-neighbor hopping), however, the filling-dependent magnetic transition changes its character and becomes continuous. Phase separation or, more carefully, the tendency towards the formation of inhomogeneous states disappears. This critical value is in contrast to previous studies, where a much larger value was obtained. Moreover, we find that the system at half-filling undergoes the Mott transition from an insulator to a state with a finite charge compressibility at essentially the same value. The weakly correlated state at half-filling exhibits superconductivity microscopically admixed to the antiferromagnetic order. This scenario suggests a close relation between phase separation and the Mott-insulator physics.
机译:针对二维Hubbard模型(包括在零温度下的最近和最近邻跳跃),研究了反铁磁,d波超导和Mott绝缘状态之间的合作与竞争。使用具有多达10个位点的不同形状和大小的簇的变分簇方法,发现掺杂驱动的从具有反铁磁和超导微观共存的相到纯超导相的间断过渡对于强相互作用是不连续的,并且伴随着通过相分离。半填充时,系统处于反铁磁Mott绝缘状态,电荷可压缩性消失。但是,在将相互作用强度U降低到大约U_c〜4的某个临界值(以最邻近跳变为单位)以下时,取决于填充的磁跃迁会改变其特性并变得连续。相分离,或更仔细地讲,形成不均匀状态的趋势消失了。该临界值与以前的研究相反,以前的研究获得了更大的值。此外,我们发现半填充系统经历了从绝缘子到有限电荷可压缩性基本上相同值的状态的Mott跃迁。半填充时的弱相关状态在微观上表现出与反铁磁有序混合的超导性。这种情况表明相分离与莫特-绝缘子物理学之间有着密切的关系。

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