We investigate the interplay between the strong correlation and the spin-orbit coupling in the Kane-Mele-Hubbard model and obtain the qualitative phase diagram via the variational cluster approach. We identify, through an increase of the Hubbard U, the transition from the topological band insulator to either the spin liquid phase or the easy-plane antiferromagnetic insulating phase, depending on the strength of the spin-orbit coupling. A nontrivial evolution of the bulk bands in the topological quantum phase transition is also demonstrated.Physics, MultidisciplinarySCI(E)EI50ARTICLE1null10
This book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenom...
We study the Haldane-Hubbard model by exact renormalization group techniques. We analytically constr...
Recently, the field of strongly correlated electrons has begun an intense search for a correlation i...
International audienceThe description of interactions in strongly correlated topological phases of m...
We discuss the appearance of quantum orders in the Hubbard model for interacting electrons, at half-...
We theoretically investigate the effect of an attractive on-site interaction on the two-band magneti...
We investigate the role of short-ranged electron-electron interactions in a paradigmatic model of th...
Using dynamical mean-field theory and exact diagonalization we study the phase diagram of the repuls...
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The recently introduced topological quantum chemistry (TQC) framework has provided a description of ...
We study the phase diagram of the frustrated t-t' Hubbard model on the square lattice by using a nov...
A two-site cluster generalization of the Hubbard model in large dimensions is examined in order to s...
Strongly correlated electron systems have the potential to host very exoticphases of matter. In ord...
Topological insulators present a bulk gap, but allow for dissipationless spin transport along the ed...
International audienceThe Widom line identifies the locus in the phase diagram where a supercritical...
This book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenom...
We study the Haldane-Hubbard model by exact renormalization group techniques. We analytically constr...
Recently, the field of strongly correlated electrons has begun an intense search for a correlation i...
International audienceThe description of interactions in strongly correlated topological phases of m...
We discuss the appearance of quantum orders in the Hubbard model for interacting electrons, at half-...
We theoretically investigate the effect of an attractive on-site interaction on the two-band magneti...
We investigate the role of short-ranged electron-electron interactions in a paradigmatic model of th...
Using dynamical mean-field theory and exact diagonalization we study the phase diagram of the repuls...
We study the vanishing of the topological properties of a quantum spin Hall insulator induced by a d...
The recently introduced topological quantum chemistry (TQC) framework has provided a description of ...
We study the phase diagram of the frustrated t-t' Hubbard model on the square lattice by using a nov...
A two-site cluster generalization of the Hubbard model in large dimensions is examined in order to s...
Strongly correlated electron systems have the potential to host very exoticphases of matter. In ord...
Topological insulators present a bulk gap, but allow for dissipationless spin transport along the ed...
International audienceThe Widom line identifies the locus in the phase diagram where a supercritical...
This book focuses on the topological fermion condensation quantum phase transition (FCQPT), a phenom...
We study the Haldane-Hubbard model by exact renormalization group techniques. We analytically constr...
Recently, the field of strongly correlated electrons has begun an intense search for a correlation i...