If not for its inherently weak optical absorption at visible and infrared wavelengths, graphene would show exceptional promise for optoelectronic applications. Here we show that by nanopatterning a graphene layer into an array of closely packed graphene nanodisks, its absorption efficiency can be increased from less than 3% to 30% in the infrared region of the spectrum. We examine the dependence of the enhanced absorption on nanodisk size and interparticle spacing. By incorporating graphene nanodisk arrays into an active device, we demonstrate that this enhanced absorption efficiency is voltage-tunable, indicating strong potential for nanopatterned graphene as an active medium for infrared electro-optic devices.Chemistry, MultidisciplinaryC...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
We demonstrate extraordinary ~45% absorption of light by graphene in mid-infrared region by exciting...
We demonstrate extraordinary ∼45% absorption of light by graphene in mid-infrared region by exciting...
Quarter-wavelength cavity, as a classical structure for preventing wave reflection, presents an effe...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
In this paper, we come up with a wavelength tunable absorber which is made up of periodically ellipt...
In this paper, we come up with a wavelength tunable absorber which is made up of periodically ellipt...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
We demonstrate extraordinary ~45% absorption of light by graphene in mid-infrared region by exciting...
We demonstrate extraordinary ∼45% absorption of light by graphene in mid-infrared region by exciting...
Quarter-wavelength cavity, as a classical structure for preventing wave reflection, presents an effe...
Graphene has emerged as an outstanding material for optoelectronic applications due to its high elec...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
In this paper, we come up with a wavelength tunable absorber which is made up of periodically ellipt...
In this paper, we come up with a wavelength tunable absorber which is made up of periodically ellipt...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...