We study the effects that ripples induce on the electrical and magnetic properties of graphene. The variation of the interatomic distance created by the ripples translates in a modulation of the hopping parameter between carbon atoms. A tight-binding Hamiltonian including a Hubbard interaction term is solved self-consistently for ripples with different amplitudes and periods. We find that, for values of the Hubbard interaction U above a critical value UC, the system displays a superposition of local ferromagnetic and antiferromagnetic ordered states. Nonetheless, the global ferromagnetic order parameter is zero. The UC depends only on the product of the period and hopping amplitude modulation. When the Hubbard interaction is close to the cr...
We studied weak localization (WL) and antilocalization (WAL) in graphene at temperatures between 0.3...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
The independent predictions of edge ferromagnetism and the Quantum Spin Hall phase in graphene have ...
We discuss the magnetic phases of the Hubbard model for the honeycomb lattice both in two and three ...
A novel magnetic ground state is reported for the Hubbard Hamiltonian in strained graphene. When the...
We study the effect of sublattice symmetry breaking on the electronic, magnetic, and transport prope...
After general discussion of itinerant-electron magetism, Hubbard model and Lieb theorem, we discuss ...
Graphene hosting a pair of collinear adatoms in the phantom atom configuration has density of states...
Application of a perpendicular magnetic field to charge neutral graphene is expected to result in a ...
We study the density of states and localization properties of the lowest Landau levels of graphene a...
The phase coherent properties of electrons in low temperature graphene are measured and analyzed. I ...
9 pags., 7 figs.We implement a self-consistent Hartree-Fock approximation based on a microscopic mod...
We theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...
Two magnetic impurities on the edge of a zigzag graphene nanoribbon strongly interact with each othe...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
We studied weak localization (WL) and antilocalization (WAL) in graphene at temperatures between 0.3...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
The independent predictions of edge ferromagnetism and the Quantum Spin Hall phase in graphene have ...
We discuss the magnetic phases of the Hubbard model for the honeycomb lattice both in two and three ...
A novel magnetic ground state is reported for the Hubbard Hamiltonian in strained graphene. When the...
We study the effect of sublattice symmetry breaking on the electronic, magnetic, and transport prope...
After general discussion of itinerant-electron magetism, Hubbard model and Lieb theorem, we discuss ...
Graphene hosting a pair of collinear adatoms in the phantom atom configuration has density of states...
Application of a perpendicular magnetic field to charge neutral graphene is expected to result in a ...
We study the density of states and localization properties of the lowest Landau levels of graphene a...
The phase coherent properties of electrons in low temperature graphene are measured and analyzed. I ...
9 pags., 7 figs.We implement a self-consistent Hartree-Fock approximation based on a microscopic mod...
We theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...
Two magnetic impurities on the edge of a zigzag graphene nanoribbon strongly interact with each othe...
Graphene, a monolayer of graphite, opened a new frontier in physics with reduced dimen- sionality. D...
We studied weak localization (WL) and antilocalization (WAL) in graphene at temperatures between 0.3...
We study the presence of ferromagnetism in the phase diagram of the two-dimensional honeycomb latti...
The independent predictions of edge ferromagnetism and the Quantum Spin Hall phase in graphene have ...