Graphene is an ideal material for integrated nonlinear optics thanks to its strong light–matter interaction and large nonlinear optical susceptibility. It has been used in optical modulators, saturable absorbers, nonlinear frequency converters, and broadband light emitters. For the latter application, a key requirement is the ability to control and engineer emission wavelength and bandwidth, as well as electronic temperature. Here, we demonstrate that the emission wavelength of graphene's broadband hot carrier photoluminescence can be tuned by integration in photonic cavities, while thermal management can be achieved by out-of-plane heat transfer to hexagonal boron nitride. Our results pave the way to graphene-based ultrafast broadband ligh...
We explore the photoluminescence (PL) properties of hexagonal boron nitride (h-BN) quantum emitters ...
Hot electrons dominate the ultrafast ($\sim$fs-ps) optical and electronic properties of metals and s...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...
Graphene is an ideal material for integrated nonlinear optics thanks to its strong light-matter inte...
Ultrafast light emission from monolayer graphene shows attractive potential for developing integrate...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
Efficient nonradiative carrier recombination strongly counteracts the appearance of optical gain in ...
Graphene does not possess a band gap, and hot carrier relaxation in graphene is an ultrafast process...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...
Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enh...
© 2018, The Author(s). High sensitivity, fast response time and strong light absorption are the most...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
Single-layer graphene has many remarkable properties but does not lend itself as a material for lig...
Hot charge carriers in graphene exhibit fascinating physical phenomena, whose understanding has impr...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
We explore the photoluminescence (PL) properties of hexagonal boron nitride (h-BN) quantum emitters ...
Hot electrons dominate the ultrafast ($\sim$fs-ps) optical and electronic properties of metals and s...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...
Graphene is an ideal material for integrated nonlinear optics thanks to its strong light-matter inte...
Ultrafast light emission from monolayer graphene shows attractive potential for developing integrate...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
Efficient nonradiative carrier recombination strongly counteracts the appearance of optical gain in ...
Graphene does not possess a band gap, and hot carrier relaxation in graphene is an ultrafast process...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...
Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enh...
© 2018, The Author(s). High sensitivity, fast response time and strong light absorption are the most...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
Single-layer graphene has many remarkable properties but does not lend itself as a material for lig...
Hot charge carriers in graphene exhibit fascinating physical phenomena, whose understanding has impr...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
We explore the photoluminescence (PL) properties of hexagonal boron nitride (h-BN) quantum emitters ...
Hot electrons dominate the ultrafast ($\sim$fs-ps) optical and electronic properties of metals and s...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...