arXiv · 0707.0791
Dynamical Mean Field Study of the Two-Dimensional Disordered Hubbard Model
Abstract
We study the two-dimensional paramagnetic Anderson-Hubbard model using an extension of dynamical mean-field theory that allows us to treat disorder and strong electronic correlations on equal footing. We investigate the scaling of the inverse participation ratio at quarter- and half-filling and find a nonmonotonic dependence of the localization length on the interaction strength. We do not find evidence for an insulator-metal transition. The disorder potential becomes unscreened near the Mott transition. Furthermore, strong correlations suppress the Altshuler-Aronov density of states anomaly near half-filling.
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Yun Song, R. Wortis, W. A. Atkinson. 2008-01-28. Dynamical Mean Field Study of the Two-Dimensional Disordered Hubbard Model. https://doi.org/10.1103/physrevb.77.054202
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