We present an extension of recent relativistic Lattice Boltzmann methods based on Gaussian quadratures for the study of fluids in (2+1) dimensions. The new method is applied to the analysis of electron flow in graphene samples subject to electrostatic drive; we show that the flow displays hydro-electronic whirlpools in accordance with recent analytical calculations as well as experimental results
We investigate the simulations of the the Schrödinger equation using the onedimensional quantum latt...
FUNDAÇÃO CARLOS CHAGAS FILHO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIRO - FAPERJWe provide num...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...
We demonstrate the possibility of turbulent flow of electrons in graphene in the hydrodynamic region...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
Particle - particle interactions in graphene force charge carriers to behave as viscous liquid. In t...
In this paper we study thermo-electric transport in interacting two-dimensional Dirac-type systems u...
Graphene hosts a unique electron system in which electron-phonon scattering is extremely weak but el...
Semi-classical hydrodynamic models for charge transport in graphene have been presented. They are de...
FAPERJ - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIROWe determine properties of the lat...
We present a systematic account of recent developments of the relativistic Lattice Boltzmann method ...
The aim of this work is to compare, in monolayer graphene, solutions of the electron Boltzmann equat...
Flowing matter is all around us, from daily-life vital processes (breathing, blood circulation), to ...
Electrons and holes in clean, charge-neutral graphene behave like a strongly coupled rel-ativistic l...
We investigate the simulations of the the Schrödinger equation using the onedimensional quantum latt...
FUNDAÇÃO CARLOS CHAGAS FILHO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIRO - FAPERJWe provide num...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...
We demonstrate the possibility of turbulent flow of electrons in graphene in the hydrodynamic region...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
Particle - particle interactions in graphene force charge carriers to behave as viscous liquid. In t...
In this paper we study thermo-electric transport in interacting two-dimensional Dirac-type systems u...
Graphene hosts a unique electron system in which electron-phonon scattering is extremely weak but el...
Semi-classical hydrodynamic models for charge transport in graphene have been presented. They are de...
FAPERJ - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIROWe determine properties of the lat...
We present a systematic account of recent developments of the relativistic Lattice Boltzmann method ...
The aim of this work is to compare, in monolayer graphene, solutions of the electron Boltzmann equat...
Flowing matter is all around us, from daily-life vital processes (breathing, blood circulation), to ...
Electrons and holes in clean, charge-neutral graphene behave like a strongly coupled rel-ativistic l...
We investigate the simulations of the the Schrödinger equation using the onedimensional quantum latt...
FUNDAÇÃO CARLOS CHAGAS FILHO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIRO - FAPERJWe provide num...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...