© 2019 American Physical Society. We report on nonequilibrium properties of graphene probed by superconducting tunnel spectroscopy. A hexagonal boron nitride (hBN) tunnel barrier in combination with a superconducting Pb contact is used to extract the local energy distribution function of the quasiparticles in graphene samples in different transport regimes. In the cases where the energy distribution function resembles a Fermi-Dirac distribution, the local electron temperature can directly be accessed. This allows us to study the cooling mechanisms of hot electrons in graphene. In the case of long samples (device length L much larger than the electron-phonon scattering length le-ph), cooling through acoustic phonons is dominant. We find a cr...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Unlike any other material, graphene is all surface. This means that it is strongly affected by its s...
© 2019 American Physical Society. We report on nonequilibrium properties of graphene probed by super...
We investigate the energy relaxation of hot carriers in a CVD-grown graphene device with a top h-BN ...
Oscillatory magnetoresistance measurements on graphene have revealed a wealth of novel physics. Thes...
Oscillatory magnetoresistance measurements on graphene have revealed a wealth of novel physics. Thes...
Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated...
Energy loss rates for hot carriers in graphene are experimentally investigated by observing the ampl...
Energy loss rates for hot carriers in graphene are experimentally investigated by observing the ampl...
Abstract Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged fro...
This dissertation focuses on the transport aspect of graphene nanoribbons and high-transition temper...
We performed tunneling spectroscopy measurements of graphene coupled to niobium/niobium-nitride supe...
Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated...
Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Unlike any other material, graphene is all surface. This means that it is strongly affected by its s...
© 2019 American Physical Society. We report on nonequilibrium properties of graphene probed by super...
We investigate the energy relaxation of hot carriers in a CVD-grown graphene device with a top h-BN ...
Oscillatory magnetoresistance measurements on graphene have revealed a wealth of novel physics. Thes...
Oscillatory magnetoresistance measurements on graphene have revealed a wealth of novel physics. Thes...
Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated...
Energy loss rates for hot carriers in graphene are experimentally investigated by observing the ampl...
Energy loss rates for hot carriers in graphene are experimentally investigated by observing the ampl...
Abstract Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged fro...
This dissertation focuses on the transport aspect of graphene nanoribbons and high-transition temper...
We performed tunneling spectroscopy measurements of graphene coupled to niobium/niobium-nitride supe...
Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated...
Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Unlike any other material, graphene is all surface. This means that it is strongly affected by its s...