Based on the recently developed picture of an electronic ideal relativistic fluid at the Dirac point, we present an analytical model for the conductivity in graphene that is able to describe the linear dependence on the carrier density and the existence of a minimum conductivity. The model treats impurities as submerged rigid obstacles, forming a disordered medium through which graphene electrons flow, in close analogy with classical fluid dynamics. To describe the minimum conductivity, we take into account the additional carrier density induced by the impurities in the sample. The model, which predicts the conductivity as a function of the impurity fraction of the sample, is supported by extensive simulations for different values of ε, the...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
We demonstrate the possibility of turbulent flow of electrons in graphene in the hydrodynamic region...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
Pristine graphene and graphene-based heterostructures can exhibit exceptionally high electron mobili...
© 2017 American Physical Society. The complete theory of electrical conductivity of graphene at arbi...
Electrons and holes in clean, charge-neutral graphene behave like a strongly coupled rel-ativistic l...
We develop a general hydrodynamic framework for computing direct current thermal and electric transp...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...
Particle - particle interactions in graphene force charge carriers to behave as viscous liquid. In t...
The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene...
The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene...
Graphene is of great fundamental interest and has potential applications in disruptive novel technol...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
We demonstrate the possibility of turbulent flow of electrons in graphene in the hydrodynamic region...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...
Pristine graphene and graphene-based heterostructures can exhibit exceptionally high electron mobili...
© 2017 American Physical Society. The complete theory of electrical conductivity of graphene at arbi...
Electrons and holes in clean, charge-neutral graphene behave like a strongly coupled rel-ativistic l...
We develop a general hydrodynamic framework for computing direct current thermal and electric transp...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
Graphene has exceptional electronic properties, such as zero band gap, massless carriers, and high m...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...
Since its isolation in monolayer sheets, graphene has emerged as an ideal two-dimensional (2D) mater...
Particle - particle interactions in graphene force charge carriers to behave as viscous liquid. In t...
The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene...
The single-band current-dipole Kubo formula for the dynamical conductivity of heavily doped graphene...
Graphene is of great fundamental interest and has potential applications in disruptive novel technol...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
We demonstrate the possibility of turbulent flow of electrons in graphene in the hydrodynamic region...
We explore the contributions to the electrical resistance of monolayer and bilayer graphene, reveali...