Conducting materials typically exhibit either diffusive or ballistic charge transport. When electron-electron interactions dominate, a hydrodynamic regime with viscous charge flow emerges -. More stringent conditions eventually yield a quantum-critical Dirac-fluid regime, where electronic heat can flow more efficiently than charge -. However, observing and controlling the flow of electronic heat in the hydrodynamic regime at room temperature has so far remained elusive. Here we observe heat transport in graphene in the diffusive and hydrodynamic regimes, and report a controllable transition to the Dirac-fluid regime at room temperature, using carrier temperature and carrier density as control knobs. We introduce the technique of spatiotempo...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
The list of graphene properties showing potential for nano-electronics applications includes high ca...
We stack-engineer an optically gated thermionic valve which acts as a thermometer for hot electronic...
Interactions between particles in quantum many-body systems can lead to collective behavior describe...
The ability to transport energy is a fundamental property of the two-dimensional Dirac fermions in g...
We develop a general hydrodynamic framework for computing direct current thermal and electric transp...
We investigate the ultrafast relaxation dynamics of hot Dirac Fermionic quasiparticles in multilayer...
Evidence is accumulating for the crucial role of a solid’s free electrons in the dynamics of solid–l...
The electronic thermal conductivity of graphene and two-dimensional Dirac materials is of fundamenta...
We study the thermal and electric transport of a fluid of interacting Dirac fermions as they arise i...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
At low temperatures, the electron gas of graphene is expected to show both very weak coupling to the...
In this paper we study thermo-electric transport in interacting two-dimensional Dirac-type systems u...
The electronic thermal conductivity in graphene describes how energy is transported by the charge ca...
FUNDAÇÃO CARLOS CHAGAS FILHO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIRO - FAPERJWe provide num...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
The list of graphene properties showing potential for nano-electronics applications includes high ca...
We stack-engineer an optically gated thermionic valve which acts as a thermometer for hot electronic...
Interactions between particles in quantum many-body systems can lead to collective behavior describe...
The ability to transport energy is a fundamental property of the two-dimensional Dirac fermions in g...
We develop a general hydrodynamic framework for computing direct current thermal and electric transp...
We investigate the ultrafast relaxation dynamics of hot Dirac Fermionic quasiparticles in multilayer...
Evidence is accumulating for the crucial role of a solid’s free electrons in the dynamics of solid–l...
The electronic thermal conductivity of graphene and two-dimensional Dirac materials is of fundamenta...
We study the thermal and electric transport of a fluid of interacting Dirac fermions as they arise i...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
At low temperatures, the electron gas of graphene is expected to show both very weak coupling to the...
In this paper we study thermo-electric transport in interacting two-dimensional Dirac-type systems u...
The electronic thermal conductivity in graphene describes how energy is transported by the charge ca...
FUNDAÇÃO CARLOS CHAGAS FILHO DE AMPARO À PESQUISA DO ESTADO DO RIO DE JANEIRO - FAPERJWe provide num...
The last few years have seen an explosion of interest in hydrodynamic effects in interacting electro...
The list of graphene properties showing potential for nano-electronics applications includes high ca...
We stack-engineer an optically gated thermionic valve which acts as a thermometer for hot electronic...