Viscous electronics is an emerging field dealing with systems in which strongly interacting electrons behave as a fluid. Electron viscous flows are governed by a nonlocal current-field relation which renders the spatial patterns of the current and electric field strikingly dissimilar. Notably, driven by the viscous friction force from adjacent layers, current can flow against the electric field, generating negative resistance, vorticity, and vortices. Moreover, different current flows can result in identical potential distributions. This sets a new situation where inferring the electron flow pattern from the measured potentials presents a nontrivial problem. Using the inherent relation between these patterns through complex analysis, here w...
peer reviewedWe show that Coulomb drag in bilayer systems in the regime of electron hydrodynamics le...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
Quantum-critical strongly correlated electron systems are predicted to feature universal collision-d...
This is the final version. Available from American Physical Society via the DOI in this record.Elect...
Electron transport in two-dimensional conducting materials such as graphene, with dominant electron–...
Graphene hosts a unique electron system in which electron-phonon scattering is extremely weak but el...
Graphene hosts a unique electron system in which electron-phonon scattering is extremely weak but el...
Strongly interacting electrons can move in a neatly coordinated way, reminiscent of the movement of ...
An electrical conductor subjected to a magnetic field exhibits the Hall effect in the presence of cu...
An electrical conductor subjected to a magnetic field exhibits the Hall effect in the presence of cu...
Spatially resolved transport in two-dimensional quantum materials can reveal dynamics which is invis...
This is the final version. Available from Springer Nature via the DOI in this record.Viscous electro...
The hydrodynamic behavior of electron fluids in a certain range of temperatures and densities is wel...
Motivated by experiments on a hydrodynamic regime in electron transport, we study the effect of an o...
peer reviewedWe show that Coulomb drag in bilayer systems in the regime of electron hydrodynamics le...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
Quantum-critical strongly correlated electron systems are predicted to feature universal collision-d...
This is the final version. Available from American Physical Society via the DOI in this record.Elect...
Electron transport in two-dimensional conducting materials such as graphene, with dominant electron–...
Graphene hosts a unique electron system in which electron-phonon scattering is extremely weak but el...
Graphene hosts a unique electron system in which electron-phonon scattering is extremely weak but el...
Strongly interacting electrons can move in a neatly coordinated way, reminiscent of the movement of ...
An electrical conductor subjected to a magnetic field exhibits the Hall effect in the presence of cu...
An electrical conductor subjected to a magnetic field exhibits the Hall effect in the presence of cu...
Spatially resolved transport in two-dimensional quantum materials can reveal dynamics which is invis...
This is the final version. Available from Springer Nature via the DOI in this record.Viscous electro...
The hydrodynamic behavior of electron fluids in a certain range of temperatures and densities is wel...
Motivated by experiments on a hydrodynamic regime in electron transport, we study the effect of an o...
peer reviewedWe show that Coulomb drag in bilayer systems in the regime of electron hydrodynamics le...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...
We propose a protocol to identify spatial hallmarks of viscous electron flow in graphene and other t...