Controlling the properties of materials by driving them out of equilibrium is an exciting prospect that has only recently begun to be explored. In this Letter we give a striking theoretical example of such materials design: a tunable gap in monolayer graphene is generated by exciting a particular optical phonon. We show that the system reaches a steady state whose transport properties are the same as if the system had a static electronic gap, controllable by the driving amplitude. Moreover, the steady state displays topological phenomena: there are chiral edge currents, which circulate a fractional charge e/2 per rotation cycle, with the frequency set by the optical phonon frequency
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
The search of new means of generating and controlling topological states of matter is at the front o...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The search of new means of generating and controlling topological states of matter is at the front o...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
The search of new means of generating and controlling topological states of matter is at the front o...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The search of new means of generating and controlling topological states of matter is at the front o...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
In condensed matter physics, the peculiar Dirac dynamics of electrons in graphene enables a plethora...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...