Ultrafast light emission from monolayer graphene shows attractive potential for developing integrated light sources for next-generation graphene-based electronic-photonic integrated circuits. In particular, graphene light sources operating at the telecom wavelengths are highly desired for the implementation of graphene-based ultrahigh-speed optical communication. Currently, most of the studies on ultrafast light emission from graphene have been performed in the visible spectrum, while studies on ultrafast emission at the telecom wavelengths remain scarce. Here, we present experimental observations of strong ultrafast thermal emission at telecom wavelengths from wafer-scale monolayer graphene. Our results show that the emission spectra can b...
Efficient nonradiative carrier recombination strongly counteracts the appearance of optical gain in ...
Graphene and other strictly two-dimensional materials are the rising stars on the horizon of materia...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
Graphene is an ideal material for integrated nonlinear optics thanks to its strong light–matter inte...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...
Graphene has extraordinary electronic and optical properties and holds great promise for application...
Graphene has extraordinary electronic and optical properties and holds great promise for application...
Graphene does not possess a band gap, and hot carrier relaxation in graphene is an ultrafast process...
The control of optical properties by electric means is the key to optoelectronic applications. For a...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
Graphene is a promising material for ultrafast and broadband photodetection. Earlier studies have ad...
Several technologies, including photodetection, imaging, and data communication, could greatly benef...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Efficient nonradiative carrier recombination strongly counteracts the appearance of optical gain in ...
Graphene and other strictly two-dimensional materials are the rising stars on the horizon of materia...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
Graphene is an ideal material for integrated nonlinear optics thanks to its strong light–matter inte...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...
Graphene has extraordinary electronic and optical properties and holds great promise for application...
Graphene has extraordinary electronic and optical properties and holds great promise for application...
Graphene does not possess a band gap, and hot carrier relaxation in graphene is an ultrafast process...
The control of optical properties by electric means is the key to optoelectronic applications. For a...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
Graphene is a promising material for ultrafast and broadband photodetection. Earlier studies have ad...
Several technologies, including photodetection, imaging, and data communication, could greatly benef...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Efficient nonradiative carrier recombination strongly counteracts the appearance of optical gain in ...
Graphene and other strictly two-dimensional materials are the rising stars on the horizon of materia...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...