We discuss the magnetic phases of the Hubbard model for the honeycomb lattice both in two and three spatial dimensions. A ground state phase diagram is obtained depending on the interaction strength U and electronic density n. We find a first order phase transition between ferromagnetic regions where the spin is maximally polarized (Nagaoka ferromagnetism) and regions with smaller magnetization (weak ferromagnetism). When taking into account the possibility of spiral states, we find that the lowest critical U is obtained for an ordering momentum different from zero. The evolution of the ordering momentum with doping is discussed. The magnetic excitations (spin waves) in the antiferromagnetic insulating phase are calculated from the random-p...
We consider the two-dimensional (2D) Hubbard model on the honeycomb lattice, as a model for a single...
We provide a unified, comprehensive treatment of all operators that contribute to the anti-ferromagn...
In this thesis, we study the electron-electron interaction on the graphene honeycomb lattice theoret...
We discuss the magnetic properties of the Hubbard model in honeycomb lattice layers. A ground state ...
PACS 71.30.+h – Metal-insulator transitions and other electronic transitions PACS 71.10.Fd – Lattice...
Within the Hartree Fock RPA analysis, we derive the spin wave spectrum for the weak ferromagnetic ph...
We theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...
We study the effects that ripples induce on the electrical and magnetic properties of graphene. The ...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
Inspired by the recent discovery of correlated insulating states in twisted bilayer graphene, we stu...
We provide a unified, comprehensive treatment of all operators that contribute to the antiferromagne...
A novel magnetic ground state is reported for the Hubbard Hamiltonian in strained graphene. When the...
We present a comprehensive computational study of the phase diagram of the frustrated S = 1/2 Heisen...
We have investigated the antiferromagnetic phase of two-dimensional (2D), three-dimensional (3D), an...
Within the Hartree Fock- RPA analysis, we derive the spin wave spectrum for the weak ferromagnetic ...
We consider the two-dimensional (2D) Hubbard model on the honeycomb lattice, as a model for a single...
We provide a unified, comprehensive treatment of all operators that contribute to the anti-ferromagn...
In this thesis, we study the electron-electron interaction on the graphene honeycomb lattice theoret...
We discuss the magnetic properties of the Hubbard model in honeycomb lattice layers. A ground state ...
PACS 71.30.+h – Metal-insulator transitions and other electronic transitions PACS 71.10.Fd – Lattice...
Within the Hartree Fock RPA analysis, we derive the spin wave spectrum for the weak ferromagnetic ph...
We theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...
We study the effects that ripples induce on the electrical and magnetic properties of graphene. The ...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
Inspired by the recent discovery of correlated insulating states in twisted bilayer graphene, we stu...
We provide a unified, comprehensive treatment of all operators that contribute to the antiferromagne...
A novel magnetic ground state is reported for the Hubbard Hamiltonian in strained graphene. When the...
We present a comprehensive computational study of the phase diagram of the frustrated S = 1/2 Heisen...
We have investigated the antiferromagnetic phase of two-dimensional (2D), three-dimensional (3D), an...
Within the Hartree Fock- RPA analysis, we derive the spin wave spectrum for the weak ferromagnetic ...
We consider the two-dimensional (2D) Hubbard model on the honeycomb lattice, as a model for a single...
We provide a unified, comprehensive treatment of all operators that contribute to the anti-ferromagn...
In this thesis, we study the electron-electron interaction on the graphene honeycomb lattice theoret...