Graphene displays a surprisingly large third order nonlinearity. Here, we report that conversion efficiencies approaching 10–4 are possible for third harmonic generation (THG). Moreover, the atomically thin nature of graphene allows for simple integration in cavity designs to increase this even further. We demonstrate a 117-fold enhancement, of resonant vs non-resonant wavelengths in the THG from graphene due to the integration of a graphene layer with a resonant cavity. This large enhancement occurs as the cavity is resonant for both the fundamental field and the third harmonic. We model this effect using the finite difference time domain approach. By comparing our model with experiment, we are able to deduce the value of a bulk third orde...
We demonstrate a scheme to dramatically enhance both the second- and third-harmonic generation (SHG,...
Abstract Benefiting from the large third-order nonlinear susceptibility of graphene and significantl...
Contains fulltext : 203560.pdf (publisher's version ) (Open Access)12 p
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...
In this paper, a new approach is proposed to efficiently enhance the third-harmonic generation (THG)...
© 2018 OSA. Electrical control of the nonlinear optical response enables applications such as gate-t...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
We report strong third-harmonic generation in monolayer graphene grown by chemical vapor deposition ...
Intriguing and unusual physical properties of graphene offer remarkable potential for advanced, phot...
Nonlinear nanophotonics leverages engineered nanostructures to funnel light into small volumes and i...
A manifestation of electron-hole pairing in nonlinear electromagnetic response of a double layer gra...
We are using a metamaterial platform that combines graphene with a photonic grating structure provi...
Graphene is a nonlinear material in the terahertz (THz) frequency range, with χ(3) ∼ 10–9 m2/V2 ∼ 15...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
We demonstrate a scheme to dramatically enhance both the second- and third-harmonic generation (SHG,...
Abstract Benefiting from the large third-order nonlinear susceptibility of graphene and significantl...
Contains fulltext : 203560.pdf (publisher's version ) (Open Access)12 p
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...
In this paper, a new approach is proposed to efficiently enhance the third-harmonic generation (THG)...
© 2018 OSA. Electrical control of the nonlinear optical response enables applications such as gate-t...
Strong nonlinear optical effects generally require giant optical fields interacting with the nonline...
We report strong third-harmonic generation in monolayer graphene grown by chemical vapor deposition ...
Intriguing and unusual physical properties of graphene offer remarkable potential for advanced, phot...
Nonlinear nanophotonics leverages engineered nanostructures to funnel light into small volumes and i...
A manifestation of electron-hole pairing in nonlinear electromagnetic response of a double layer gra...
We are using a metamaterial platform that combines graphene with a photonic grating structure provi...
Graphene is a nonlinear material in the terahertz (THz) frequency range, with χ(3) ∼ 10–9 m2/V2 ∼ 15...
Deinert J-C, Alcaraz Iranzo D, Perez R, et al. Grating-Graphene Metamaterial as a Platform for Terah...
We demonstrate a scheme to dramatically enhance both the second- and third-harmonic generation (SHG,...
Abstract Benefiting from the large third-order nonlinear susceptibility of graphene and significantl...
Contains fulltext : 203560.pdf (publisher's version ) (Open Access)12 p