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Correlated Dirac semimetal by periodized cluster dynamical mean-field theory

机译:周期簇动态平均场理论关联狄拉克半金属

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摘要

The periodized cluster dynamical mean-field theory (PCDMFT) combined with exact diagonalization as the impurity solver has been applied to the half-filled standard Hubbard model on the honeycomb lattice. A correlated Dirac semimetal is found for weak interactions and it transforms into an antiferromagnetic insulating phase for strong interactions via a first-order quantum phase transition, not intervened by a spin liquid phase in between. In this application, the PCDMFT introduces the partial translation symmetry, but cures well the problem caused by the translation symmetry breaking in the cluster dynamical mean-field theory studies for the same model, which gives rise to a spurious insulating phase in the weakly interacting region.
机译:周期簇动态平均场理论(PCDMFT)结合精确对角化作为杂质求解器已应用于蜂窝晶格上的半填充标准Hubbard模型。发现相关的狄拉克半金属具有弱相互作用,并且它通过一阶量子相变而转变成反铁磁绝缘相,从而具有强相互作用,而在两者之间不受自旋液相的干扰。在该应用中,PCDMFT引入了部分平移对称性,但是很好地解决了同一模型的簇动态平均场理论研究中由平移对称性破坏引起的问题,从而在弱相互作用区域中产生了虚假的绝缘相。 。

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