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Two-dimensional Anderson-Hubbard model in the DMFT plus Sigma approximation

机译:DMFT中的二维Anderson-Hubbard模型加上Sigma近似

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The density of states, the dynamic (optical) conductivity, and the phase diagram of the paramagnetic two-dimensional Anderson-Hubbard model with strong correlations and disorder are analyzed within the generalized dynamical mean field theory (DMFT + I pound approximation). Strong correlations are accounted by the DMFT, while disorder is taken into account via the appropriate generalization of the self-consistent theory of localization. We consider the two-dimensional system with the rectangular "bare" density of states (DOS). The DMFT effective single-impurity problem is solved by numerical renormalization group (NRG). The "correlated metal," Mott insulator, and correlated Anderson insulator phases are identified from the evolution of the density of states, optical conductivity, and localization length, demonstrating both Mott-Hubbard and Anderson metal-insulator transitions in two-dimensional systems of finite size, allowing us to construct the complete zero-temperature phase diagram of the paramagnetic Anderson-Hubbard model. The localization length in our approximation is practically independent of the strength of Hubbard correlations. But the divergence of the localization length in a finite-size two-dimensional system at small disorder signifies the existence of an effective Anderson transition.
机译:在广义动态平均场理论(DMFT + I磅近似)下,分析了具有强相关性和无序性的顺磁二维Anderson-Hubbard模型的状态密度,动态(光学)电导率和相图。 DMFT解释了强相关性,而通过对自洽的本地化理论的适当概括考虑了无序性。我们考虑具有矩形“裸”状态密度(DOS)的二维系统。 DMFT有效的单杂质问题通过数值归一化组(NRG)解决。 “关联金属”,莫特绝缘子和相关的安德森绝缘子相是根据状态密度,光导率和局部长度的演变来确定的,证明了二维有限元系统中的莫特-哈伯德和安德森金属-绝缘子跃迁大小,使我们能够构建顺磁性Anderson-Hubbard模型的完整零温度相图。我们近似中的定位长度实际上与Hubbard相关性的强度无关。但是,在小无序情况下,有限尺寸的二维系统中定位长度的发散表明存在有效的安德森转换。

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