The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene from Kupčić [Phys. Rev. B 91, 205428 (2015)] is extended to a two-band model for conduction pi electrons in lightly doped graphene. Using a posteriori relaxation-time approximation in the two-band quantum transport equations, with two different relaxation rates and one quasi-particle lifetime, we explain a seemingly inconsistent dependence of the dc conductivity of ultraclean and dirty lightly doped graphene samples on electron doping, in a way consistent with the charge continuity equation. It is also shown that the intraband contribution to the effective number of conduction electrons in the dc conductivity vanishes at T=0 K in the ultracl...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
In this paper we systemically study the optical conductivity and density of states of disordered gra...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...
The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene...
The dynamical conductivity of interacting multiband electronic systems derived by Kupčić et al. [J. ...
The generalized self-consistent field method is used to describe intraband relaxation processes in a...
The generalized self-consistent field method is used to describe intraband relaxation processes in a...
The dynamical conductivity of interacting multiband electronic systems derived by Kupčić et al. [J. ...
The remarkable transport properties of graphene follow not only from the Dirac-type energy dispersio...
Based on the recently developed picture of an electronic ideal relativistic fluid at the Dirac point...
Analytical expressions are presented for the intraband dyadic conductivity of graphene, fully taking...
In this paper we systemically study the optical conductivity and density of states of disordered gra...
Pristine graphene and graphene-based heterostructures can exhibit exceptionally high electron mobili...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
In this paper we systemically study the optical conductivity and density of states of disordered gra...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...
The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene...
The dynamical conductivity of interacting multiband electronic systems derived by Kupčić et al. [J. ...
The generalized self-consistent field method is used to describe intraband relaxation processes in a...
The generalized self-consistent field method is used to describe intraband relaxation processes in a...
The dynamical conductivity of interacting multiband electronic systems derived by Kupčić et al. [J. ...
The remarkable transport properties of graphene follow not only from the Dirac-type energy dispersio...
Based on the recently developed picture of an electronic ideal relativistic fluid at the Dirac point...
Analytical expressions are presented for the intraband dyadic conductivity of graphene, fully taking...
In this paper we systemically study the optical conductivity and density of states of disordered gra...
Pristine graphene and graphene-based heterostructures can exhibit exceptionally high electron mobili...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
In this paper we systemically study the optical conductivity and density of states of disordered gra...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...