We study the Haldane-Hubbard model by exact renormalization group techniques. We analytically construct the topological phase diagram, for weak interactions. We predict that many-body interactions induce a shift of the transition line: in particular, repulsive interactions enlarge the topologically nontrivial region. The presence of new intermediate phases, absent in the noninteracting case, is rigorously excluded at weak coupling. Despite the nontrivial renormalization of the wave function and of the Fermi velocity, the conductivity is universal: at the renormalized critical line, both the discontinuity of the transverse conductivity and the longitudinal conductivity are independent of the interaction, thanks to remarkable cancellations du...
We study the Haldane model with nearest–neighbor interactions. This model is physically motivated by...
Topological insulators (superconductors) are materials that host symmetry-protected metallic edge st...
The recently introduced topological quantum chemistry (TQC) framework has provided a description of ...
We study the Haldane-Hubbard model by exact renormalization group techniques. We analytically constr...
Using dynamical mean-field theory and exact diagonalization we study the phase diagram of the repuls...
The Haldane model is a paradigmatic 2d lattice model exhibiting the integer quantum Hall effect. We ...
Topological phase transitions occur in real materials as well as quantum engineered systems, all of ...
The Hubbard model on the honeycomb lattice describes charge carriers in graphene with short range in...
International audienceWe develop a framework to analyze the topological properties of one-dimensiona...
We present a functional renormalization-group approach to interacting topological Green's function i...
We investigate the interplay between the strong correlation and the spin-orbit coupling in the Kane-...
Condensed matter systems in the solid state owe much of their properties to the quantum behavior of ...
International audienceThe description of interactions in strongly correlated topological phases of m...
We investigate the role of short-ranged electron-electron interactions in a paradigmatic model of th...
We study connections between global symmetries, topological objects, and phase transitions in non-ab...
We study the Haldane model with nearest–neighbor interactions. This model is physically motivated by...
Topological insulators (superconductors) are materials that host symmetry-protected metallic edge st...
The recently introduced topological quantum chemistry (TQC) framework has provided a description of ...
We study the Haldane-Hubbard model by exact renormalization group techniques. We analytically constr...
Using dynamical mean-field theory and exact diagonalization we study the phase diagram of the repuls...
The Haldane model is a paradigmatic 2d lattice model exhibiting the integer quantum Hall effect. We ...
Topological phase transitions occur in real materials as well as quantum engineered systems, all of ...
The Hubbard model on the honeycomb lattice describes charge carriers in graphene with short range in...
International audienceWe develop a framework to analyze the topological properties of one-dimensiona...
We present a functional renormalization-group approach to interacting topological Green's function i...
We investigate the interplay between the strong correlation and the spin-orbit coupling in the Kane-...
Condensed matter systems in the solid state owe much of their properties to the quantum behavior of ...
International audienceThe description of interactions in strongly correlated topological phases of m...
We investigate the role of short-ranged electron-electron interactions in a paradigmatic model of th...
We study connections between global symmetries, topological objects, and phase transitions in non-ab...
We study the Haldane model with nearest–neighbor interactions. This model is physically motivated by...
Topological insulators (superconductors) are materials that host symmetry-protected metallic edge st...
The recently introduced topological quantum chemistry (TQC) framework has provided a description of ...