Using linear flavor-wave theory (LFWT) and auxiliary field quantum Monte Carlo (QMC), we investigate the properties of the SU(4) Heisenberg model on the anisotropic square lattice in the fully antisymmetric six-dimensional irreducible representation, a model that describes interacting fermions with four flavors at half-filling. Thanks to the calculations on very large systems, we have been able to convincingly demonstrate that QMC results are consistent with a small but finite antiferromagnetic moment at the isotropic point, in qualitative agreement with LFWT obtained earlier [F. H. Kim et al., Phys. Rev. B 96, 205142 (2017)], and in quantitative agreement with results obtained previously on the Hubbard model [D. Wang et al., Phys. Rev. Let...
We investigate the competition between antiferromagnetism and triplet superconductivity in quasi-one...
Interest in lattice quantum spin systems as models of quantum magnets has increased with the discove...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
The extension of the linear flavor-wave theory to fully antisymmetric irreducible representations (i...
This thesis explores various approaches of studying the long-range colour order of antiferromagnetic...
Using infinite projected entangled-pair states, exact diagonalization, and flavor-wave theory, we sh...
International audienceWe consider a model Hamiltonian with two SU(4) fermions per site on a square l...
We revisit the SU(6) Heisenberg model on the honeycomb lattice, which has been predicted to be a chi...
International audienceIn systems with many local degrees of freedom, high-symmetry points in the pha...
In this thesis we apply recently developed, as well as sophisticated quantum Monte Carlo methods to ...
We provide a unified, comprehensive treatment of all operators that contribute to the antiferromagne...
We revisit the SU(6) Heisenberg model on the honeycomb lattice, which has been predicted to be a chi...
The research carried out in this project aims to exactly solve models of correlated electron systems...
We provide a unified, comprehensive treatment of all operators that contribute to the anti-ferromagn...
We revisit the SU(6) Heisenberg model on the honeycomb lattice, which has been predicted to be a chi...
We investigate the competition between antiferromagnetism and triplet superconductivity in quasi-one...
Interest in lattice quantum spin systems as models of quantum magnets has increased with the discove...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
The extension of the linear flavor-wave theory to fully antisymmetric irreducible representations (i...
This thesis explores various approaches of studying the long-range colour order of antiferromagnetic...
Using infinite projected entangled-pair states, exact diagonalization, and flavor-wave theory, we sh...
International audienceWe consider a model Hamiltonian with two SU(4) fermions per site on a square l...
We revisit the SU(6) Heisenberg model on the honeycomb lattice, which has been predicted to be a chi...
International audienceIn systems with many local degrees of freedom, high-symmetry points in the pha...
In this thesis we apply recently developed, as well as sophisticated quantum Monte Carlo methods to ...
We provide a unified, comprehensive treatment of all operators that contribute to the antiferromagne...
We revisit the SU(6) Heisenberg model on the honeycomb lattice, which has been predicted to be a chi...
The research carried out in this project aims to exactly solve models of correlated electron systems...
We provide a unified, comprehensive treatment of all operators that contribute to the anti-ferromagn...
We revisit the SU(6) Heisenberg model on the honeycomb lattice, which has been predicted to be a chi...
We investigate the competition between antiferromagnetism and triplet superconductivity in quasi-one...
Interest in lattice quantum spin systems as models of quantum magnets has increased with the discove...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...