We discuss the excitation spectrum, electronic susceptibilities, and possible electronic instabilities in graphene and graphene stacks. The corrections due interactions of Landau levels in graphene are analyzed. At low dopings, and for sufficiently low couplings, single layer graphene is stable against ferromagnetism. On the other hand, a graphene bilayer, and infinite graphite, are unstable towards ferromagnetism and antiferromagnetism
We investigate the many-body instabilities of electrons interacting near Van Hove singularities aris...
We study Ruderman–Kittel–Kasuya–Yosida (RKKY) interactions for magnetic impurities on graphene in si...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
The topics covered in this work are - spin-density-wave instabilities in monolayer graphene doped to...
8 págs.; 7 figs.; PACS number(s): 75.10.Jm, 75.10.Lp, 75.30.DsThe effects of the electron-electron i...
textIn this thesis we investigate the electronic band structures and the correlations in chirally (...
textIn a strong magnetic field, the psuedospin chirality of bilayer graphene’s low energy bands resu...
We study the ground-state properties of an ABA-stacked trilayer graphene. The low-energy band struct...
Graphene is a layer of carbon atoms arranged in a honeycomb lattice. In 2004, Andre Geim and Konstan...
In this article we study the ferromagnetic behavior of ABC-stacked trilayer graphene. This is done u...
Mono and bilayer graphene are novel carbon materials with many remarkable properties. Their electron...
We present magneto-Raman scattering studies of electronic inter-Landau level excitations in quasineu...
Close to charge neutrality, the electronic properties of graphene and its multilayers are sensitive ...
Placing a two-dimensional sheet of graphene in an external magnetic field the continuous electronic ...
Low-energy electronic structure of (unbiased) bilayer graphene is made of two Fermi points with quad...
We investigate the many-body instabilities of electrons interacting near Van Hove singularities aris...
We study Ruderman–Kittel–Kasuya–Yosida (RKKY) interactions for magnetic impurities on graphene in si...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...
The topics covered in this work are - spin-density-wave instabilities in monolayer graphene doped to...
8 págs.; 7 figs.; PACS number(s): 75.10.Jm, 75.10.Lp, 75.30.DsThe effects of the electron-electron i...
textIn this thesis we investigate the electronic band structures and the correlations in chirally (...
textIn a strong magnetic field, the psuedospin chirality of bilayer graphene’s low energy bands resu...
We study the ground-state properties of an ABA-stacked trilayer graphene. The low-energy band struct...
Graphene is a layer of carbon atoms arranged in a honeycomb lattice. In 2004, Andre Geim and Konstan...
In this article we study the ferromagnetic behavior of ABC-stacked trilayer graphene. This is done u...
Mono and bilayer graphene are novel carbon materials with many remarkable properties. Their electron...
We present magneto-Raman scattering studies of electronic inter-Landau level excitations in quasineu...
Close to charge neutrality, the electronic properties of graphene and its multilayers are sensitive ...
Placing a two-dimensional sheet of graphene in an external magnetic field the continuous electronic ...
Low-energy electronic structure of (unbiased) bilayer graphene is made of two Fermi points with quad...
We investigate the many-body instabilities of electrons interacting near Van Hove singularities aris...
We study Ruderman–Kittel–Kasuya–Yosida (RKKY) interactions for magnetic impurities on graphene in si...
Some unusual properties of layered graphite, including a linear energy dependence of the quasipartic...