We study the thermal and electric transport of a fluid of interacting Dirac fermions as they arise in single-layer graphene. We include Coulomb interactions, a dilute density of charged impurities and the presence of a magnetic field to describe both the static and the low frequency response as a function of temperature \(T\) and chemical potential \(\mu\). In the critical regime \(\mu \lesssim T\) where both bands above and below the Dirac point contribute to transport we find pronounced deviations from Fermi liquid behavior, universal, collision-dominated values for transport coefficients and a cyclotron resonance of collective nature. In the collision-dominated high temperature regime the linear thermoelectric transport coefficients are ...
We show that the emergent relativistic symmetry of electrons in graphene near its quantum critical p...
The impact of the electron-electron Coulomb interaction on the optical conductivity of graphene has ...
We report the enhancement of the thermoelectric power (TEP) in graphene with extremely low disorder....
Abstract. We study the thermal and electric transport of a fluid of interacting Dirac fermions as th...
Electrons and holes in clean, charge-neutral graphene behave like a strongly coupled rel-ativistic l...
One of the main mysteries to contemporary physics is that of the behavior of many-body quantum syste...
Interactions between particles in quantum many-body systems can lead to collective behavior describe...
We study the electric and thermal transport of the Dirac carriers in monolayer graphene using the Bo...
We calculate the optical (cutoff >> frequency >> temperature) conductivity in clean graphene in the ...
We develop a general hydrodynamic framework for computing direct current thermal and electric transp...
Shytov, Andrei et al. “Atomic collapse, Lorentz boosts, Klein scattering, and other quantum-relativi...
We numerically study the thermoelectric transports of Dirac fermions in graphene in the presence of ...
We theoretically investigate Coulomb drag in a system of two parallel monolayers of graphene. Using ...
In the 2016 experiment by Crossno et al. the electronic contribution to the thermal conductivity of ...
Thermoelectric power (TEP) is measured in bilayer graphene for various temperatures and charge-carri...
We show that the emergent relativistic symmetry of electrons in graphene near its quantum critical p...
The impact of the electron-electron Coulomb interaction on the optical conductivity of graphene has ...
We report the enhancement of the thermoelectric power (TEP) in graphene with extremely low disorder....
Abstract. We study the thermal and electric transport of a fluid of interacting Dirac fermions as th...
Electrons and holes in clean, charge-neutral graphene behave like a strongly coupled rel-ativistic l...
One of the main mysteries to contemporary physics is that of the behavior of many-body quantum syste...
Interactions between particles in quantum many-body systems can lead to collective behavior describe...
We study the electric and thermal transport of the Dirac carriers in monolayer graphene using the Bo...
We calculate the optical (cutoff >> frequency >> temperature) conductivity in clean graphene in the ...
We develop a general hydrodynamic framework for computing direct current thermal and electric transp...
Shytov, Andrei et al. “Atomic collapse, Lorentz boosts, Klein scattering, and other quantum-relativi...
We numerically study the thermoelectric transports of Dirac fermions in graphene in the presence of ...
We theoretically investigate Coulomb drag in a system of two parallel monolayers of graphene. Using ...
In the 2016 experiment by Crossno et al. the electronic contribution to the thermal conductivity of ...
Thermoelectric power (TEP) is measured in bilayer graphene for various temperatures and charge-carri...
We show that the emergent relativistic symmetry of electrons in graphene near its quantum critical p...
The impact of the electron-electron Coulomb interaction on the optical conductivity of graphene has ...
We report the enhancement of the thermoelectric power (TEP) in graphene with extremely low disorder....