The control of optical properties by electric means is the key to optoelectronic applications. For atomically thin two-dimensional (2D) materials, the natural advantage lies in that the carrier doping could be readily controlled through the electric gating effect, possibly affecting the optical properties. Exploiting this advantage, here we report the gate switching of the ultrafast upconverted photoluminescence from monolayer graphene. The luminescence can be completely switched off by the Pauli-blocking of one-photon interband transition in graphene with an on/off ratio exceeding 100, which is remarkable compared to other 2D semiconductors and 3D bulk counterparts. The chemical potential and pump fluence dependences of the luminescence ar...
For many of the envisioned optoelectronic applications of graphene, it is crucial to understand the ...
Graphene/III–V semiconductor van der Waals (vdW) heterostructures offer potential access to physics,...
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...
We present a joint theory-experiment study on ultrafast photoluminescence from photo-excited graphen...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
Ultrafast light emission from monolayer graphene shows attractive potential for developing integrate...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
Graphene does not possess a band gap, and hot carrier relaxation in graphene is an ultrafast process...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
Thesis (Ph.D.)--University of Washington, 2015Layered materials when thinned down to their monolayer...
We report on the intrinsic optoelectronic response of high-quality dual-gated monolayer and bilayer ...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
In the last two decades, the three-beams pump-push-probe (PPP) technique has become a well-establish...
Heterostructures involving layered two-dimensional (2D) transition metal dichalcogenides (TMDCs) are...
For many of the envisioned optoelectronic applications of graphene, it is crucial to understand the ...
Graphene/III–V semiconductor van der Waals (vdW) heterostructures offer potential access to physics,...
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...
We present a joint theory-experiment study on ultrafast photoluminescence from photo-excited graphen...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
Ultrafast light emission from monolayer graphene shows attractive potential for developing integrate...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
Graphene does not possess a band gap, and hot carrier relaxation in graphene is an ultrafast process...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...
Thesis (Ph.D.)--University of Washington, 2015Layered materials when thinned down to their monolayer...
We report on the intrinsic optoelectronic response of high-quality dual-gated monolayer and bilayer ...
: The ability to tune the optical response of a material via electrostatic gating is crucial for opt...
In the last two decades, the three-beams pump-push-probe (PPP) technique has become a well-establish...
Heterostructures involving layered two-dimensional (2D) transition metal dichalcogenides (TMDCs) are...
For many of the envisioned optoelectronic applications of graphene, it is crucial to understand the ...
Graphene/III–V semiconductor van der Waals (vdW) heterostructures offer potential access to physics,...
The ability to tune the optical response of a material via electrostatic gating is crucial for optoe...