Optical harmonic generation occurs when high intensity light (>1010 W m-2) interacts with a nonlinear material. Electrical control of the nonlinear optical response enables applications such as gate-tunable switches and frequency converters. Graphene displays exceptionally strong light-matter interaction and electrically and broadband tunable third-order nonlinear susceptibility. Here, we show that the third-harmonic generation efficiency in graphene can be increased by almost two orders of magnitude by controlling the Fermi energy and the incident photon energy. This enhancement is due to logarithmic resonances in the imaginary part of the nonlinear conductivity arising from resonant multiphoton transitions. Thanks to the linear dispers...
© 2019 American Chemical Society. Hot electrons dominate the ultrafast (∼fs-ps) optical and electron...
We report strong third-harmonic generation in monolayer graphene grown by chemical vapor deposition ...
Hot electrons dominate the ultrafast ($\sim$fs-ps) optical and electronic properties of metals and s...
Optical harmonic generation occurs when high intensity light (>10^10 W m–2) interacts with a nonl...
Optical harmonic generation occurs when high intensity light (>1010 W m–2) interacts with a nonlinea...
Electrical control of the nonlinear optical response enables applications such as gate-tunable switc...
Nonlinear nanophotonics leverages engineered nanostructures to funnel light into small volumes and i...
Graphene displays a surprisingly large third order nonlinearity. Here, we report that conversion eff...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
The demonstration of broadband, electrically tunable third-order nonlinear optical responses in grap...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
We demonstrate a scheme to dramatically enhance both the second- and third-harmonic generation (SHG,...
This article was published in the New Journal of Physics, 2014 (16). Content from this work may be ...
Intriguing and unusual physical properties of graphene offer remarkable potential for advanced, phot...
© 2019 American Chemical Society. Hot electrons dominate the ultrafast (∼fs-ps) optical and electron...
We report strong third-harmonic generation in monolayer graphene grown by chemical vapor deposition ...
Hot electrons dominate the ultrafast ($\sim$fs-ps) optical and electronic properties of metals and s...
Optical harmonic generation occurs when high intensity light (>10^10 W m–2) interacts with a nonl...
Optical harmonic generation occurs when high intensity light (>1010 W m–2) interacts with a nonlinea...
Electrical control of the nonlinear optical response enables applications such as gate-tunable switc...
Nonlinear nanophotonics leverages engineered nanostructures to funnel light into small volumes and i...
Graphene displays a surprisingly large third order nonlinearity. Here, we report that conversion eff...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
The demonstration of broadband, electrically tunable third-order nonlinear optical responses in grap...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
We demonstrate a scheme to dramatically enhance both the second- and third-harmonic generation (SHG,...
This article was published in the New Journal of Physics, 2014 (16). Content from this work may be ...
Intriguing and unusual physical properties of graphene offer remarkable potential for advanced, phot...
© 2019 American Chemical Society. Hot electrons dominate the ultrafast (∼fs-ps) optical and electron...
We report strong third-harmonic generation in monolayer graphene grown by chemical vapor deposition ...
Hot electrons dominate the ultrafast ($\sim$fs-ps) optical and electronic properties of metals and s...