The ability to tune the optical response of a material via electrostatic gating is crucial for optoelectronic applications, such as electro-optic modulators, saturable absorbers, optical limiters, photodetectors and transparent electrodes. The band structure of single layer graphene (SLG), with zero-gap, linearly dispersive conduction and valence bands, enables an easy control of the Fermi energy E$_F$ and of the threshold for interband optical absorption. Here, we report the tunability of the SLG non-equilibrium optical response in the near-infrared (1000-1700nm/0.729-1.240eV), exploring a range of E$_F$ from -650 to 250 meV by ionic liquid gating. As E$_F$ increases from the Dirac point to the threshold for Pauli blocking of interband abs...
ABSTRACT: We investigate the ultrafast terahertz response of electrostatically gated graphene upon o...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We demonstrate extraordinary ∼45% absorption of light by graphene in mid-infrared region by exciting...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
© 2019 IEEE The ultrafast relaxation dynamics in single-layer graphene (SLG) is of key importance fo...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Abstract: We study the ultrafast dynamics of non-thermal electron relaxation in graphene upon impuls...
ABSTRACT: We investigate the ultrafast terahertz response of electrostatically gated graphene upon o...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We demonstrate extraordinary ∼45% absorption of light by graphene in mid-infrared region by exciting...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
© 2019 IEEE The ultrafast relaxation dynamics in single-layer graphene (SLG) is of key importance fo...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Abstract: We study the ultrafast dynamics of non-thermal electron relaxation in graphene upon impuls...
ABSTRACT: We investigate the ultrafast terahertz response of electrostatically gated graphene upon o...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We demonstrate extraordinary ∼45% absorption of light by graphene in mid-infrared region by exciting...