Dynamic gap generation in graphene under the long-range Coulomb interaction is studied by the Dyson-Schwinger gap equation beyond the instantaneous approximation. Once the dependence of the dynamic gap on the energy has been considered, the critical interaction strength alpha(c) decreases to 0.542. If the renormalization of the fermion velocity is considered, alpha(c) will become alpha(c) = 1.02. This indicates that the dependence on the energy and the renormalization of the fermion velocity are both important for dynamic gap generation in graphene under long-range Coulomb interaction
We present a new semiempirical potential for graphene, which includes also an put-of-plane energy te...
Quantum-mechanical calculations of electron transport in ideal graphene nanoribbons show that the tr...
The electronic structure of a single-layer graphene with a periodic Fermi velocity modulation is inv...
Dynamic gap generation in graphene under the long-range Coulomb interaction is studied by the Dyson-...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
In this paper, we consider the possibility of chiral (charge or spin density wave) symmetry breaking...
Electron interactions in undoped bilayer graphene lead to an instability of the gapless state, “whic...
We show that, at sufficiently large strength of the long-range Coulomb interaction, a mass term brea...
7 pagesThe dynamical generation of a fermion gap in graphene is studied at the infra-red Lorentz-inv...
We present a theory of electron-mediated interaction between adatoms in graphene. In the case of res...
To obtain an effective many-body model of graphene and related materials from first principles we ca...
We examine the time dependence of the position-momentum and position-velocity uncertainties in monol...
We present numerical calculations of the effect of gap opening on the quasiparticle properties of a ...
We present analytical expressions for the current-current correlation function in graphene for arbit...
We present a new semiempirical potential for graphene, which includes also an put-of-plane energy te...
Quantum-mechanical calculations of electron transport in ideal graphene nanoribbons show that the tr...
The electronic structure of a single-layer graphene with a periodic Fermi velocity modulation is inv...
Dynamic gap generation in graphene under the long-range Coulomb interaction is studied by the Dyson-...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
We investigate the problem of dynamical gap generation in suspended graphene by long-range Coulomb i...
In this paper, we consider the possibility of chiral (charge or spin density wave) symmetry breaking...
Electron interactions in undoped bilayer graphene lead to an instability of the gapless state, “whic...
We show that, at sufficiently large strength of the long-range Coulomb interaction, a mass term brea...
7 pagesThe dynamical generation of a fermion gap in graphene is studied at the infra-red Lorentz-inv...
We present a theory of electron-mediated interaction between adatoms in graphene. In the case of res...
To obtain an effective many-body model of graphene and related materials from first principles we ca...
We examine the time dependence of the position-momentum and position-velocity uncertainties in monol...
We present numerical calculations of the effect of gap opening on the quasiparticle properties of a ...
We present analytical expressions for the current-current correlation function in graphene for arbit...
We present a new semiempirical potential for graphene, which includes also an put-of-plane energy te...
Quantum-mechanical calculations of electron transport in ideal graphene nanoribbons show that the tr...
The electronic structure of a single-layer graphene with a periodic Fermi velocity modulation is inv...