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Excitonic Order and Superconductivity in the Two-Orbital Hubbard Model: Variational Cluster Approach

Published 14 Mar 2018 in cond-mat.str-el and cond-mat.supr-con | (1803.05224v3)

Abstract: Using the variational cluster approach based on the self-energy functional theory, we study the possible occurrence of excitonic order and superconductivity in the two-orbital Hubbard model with intra- and inter-orbital Coulomb interactions. It is known that an antiferromagnetic Mott insulator state appears in the regime of strong intra-orbital interaction, a band insulator state appears in the regime of strong inter-orbital interaction, and an excitonic insulator state appears between them. In addition to these states, we find that the $s{\pm}$-wave superconducting state appears in the small-correlation regime, and the $d_{x2 - y2}$-wave superconducting state appears on the boundary of the antiferromagnetic Mott insulator state. We calculate the single-particle spectral function of the model and compare the band gap formation due to the superconducting and excitonic orders.

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