We demonstrate electrical control over coherent optical absorption in a graphene-based Salisbury screen consisting of a single layer of graphene placed in close proximity to a gold back reflector. The screen was designed to enhance light absorption at a target wavelength of 3.2 m by using a 600 nm-thick, nonabsorbing silica spacer layer. An ionic gel layer placed on top of the screen was used to electrically gate the charge density in the graphene layer. Spectroscopic reflectance measurements were performed in situ as a function of gate bias. The changes in the reflectance spectra were analyzed using a Fresnel based transfer matrix model in which graphene was treated as an infinitesimally thin sheet with a conductivity given by the Kubo for...
We demonstrate extraordinary ~45% absorption of light by graphene in mid-infrared region by exciting...
We investigate the absorption properties of graphene-based anisotropic metamaterial structures where...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
We demonstrate electrical control over coherent optical absorption in a graphene-based Salisbury scr...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Analytical formulas are derived describing the coherent absorption of light from a realistic multila...
We propose a graphene-based optical modulator and comprehensively investigate its photonic character...
We report the infrared transmission measurement on electrically gated twisted bilayer graphene. The ...
We experimentally demonstrate a broadband enhancement of the light absorption in graphene over the w...
Precise control of light is indispensable to modern optical communication devices especially as the ...
Active manipulation of light in optical fibres has been extensively studied with great interest beca...
We report experimental observation of electrically tunable coherent perfect absorption (CPA) of tera...
The optical absorption properties of periodically patterned graphene plasmonic resonators are studie...
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
We demonstrate extraordinary ~45% absorption of light by graphene in mid-infrared region by exciting...
We investigate the absorption properties of graphene-based anisotropic metamaterial structures where...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
We demonstrate electrical control over coherent optical absorption in a graphene-based Salisbury scr...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Analytical formulas are derived describing the coherent absorption of light from a realistic multila...
We propose a graphene-based optical modulator and comprehensively investigate its photonic character...
We report the infrared transmission measurement on electrically gated twisted bilayer graphene. The ...
We experimentally demonstrate a broadband enhancement of the light absorption in graphene over the w...
Precise control of light is indispensable to modern optical communication devices especially as the ...
Active manipulation of light in optical fibres has been extensively studied with great interest beca...
We report experimental observation of electrically tunable coherent perfect absorption (CPA) of tera...
The optical absorption properties of periodically patterned graphene plasmonic resonators are studie...
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
We demonstrate extraordinary ~45% absorption of light by graphene in mid-infrared region by exciting...
We investigate the absorption properties of graphene-based anisotropic metamaterial structures where...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...