Quantum cluster approach to the topological invariants in correlated Chern insulators

We detect the topological properties of Chern insulators with strong Coulomb interactions by use of cluster perturbation theory and variational cluster approach. The common scheme in previous studies only involves the calculation of the interacting bulk Chern number within the natural-unit cell by m...

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Bibliographic Details
Published inNew journal of physics Vol. 21; no. 7; pp. 73016 - 73025
Main Authors Gu, Zhao-Long, Li, Kai, Li, Jian-Xin
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 03.07.2019
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Summary:We detect the topological properties of Chern insulators with strong Coulomb interactions by use of cluster perturbation theory and variational cluster approach. The common scheme in previous studies only involves the calculation of the interacting bulk Chern number within the natural-unit cell by means of the so-called topological Hamiltonian. With close investigations on a prototype model, the half-filled Haldane Hubbard model, which is subject to both periodic and open boundary conditions, we uncover the unexpected failure of this scheme due to the explicit breaking of the translation symmetry. Instead, we assert that the faithful interacting bulk Chern number in the framework of quantum cluster approaches can be computed in the enlarged unit cell, which is free of the fault caused by the explicit translation symmetry breaking and consistent with the interacting bulk-edge correspondence.
Bibliography:NJP-110230.R1
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ISSN:1367-2630
1367-2630
DOI:10.1088/1367-2630/ab2a97