The ability to engineer a thin two-dimensional surface for light trapping across an ultra-broad spectral range is central for an increasing number of applications including energy, optoelectronics, and spectroscopy. Although broadband light trapping has been obtained in tall structures of carbon nanotubes with millimeter-tall dimensions, obtaining such broadband light–trapping behavior from nanometer-scale absorbers remains elusive. We report a method for trapping the optical field coincident with few-layer decoupled graphene using field localization within a disordered distribution of subwavelength-sized nanotexturing metal particles. We show that the combination of the broadband light–coupling effect from the disordered nanotexture combin...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
Graphene is well-known for its extraordinary physical properties such as broadband optical absorptio...
If not for its inherently weak optical absorption at visible and infrared wavelengths, graphene woul...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
We propose a novel approach to obtain the ultra-narrowband, electrically switchable, and high-effici...
Graphene is a two-dimensional material with intriguing electrical and optical properties for infrare...
Research on nanophotonic structures for three application areas is described, a near perfect optical...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
We investigate the absorption enhancement of an unstructured graphene sheet in a broad frequency ran...
We report a small-angle ultra-narrowband mid-infrared tunable absorber that uses graphene and dielec...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
Graphene is well-known for its extraordinary physical properties such as broadband optical absorptio...
If not for its inherently weak optical absorption at visible and infrared wavelengths, graphene woul...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
We propose a novel approach to obtain the ultra-narrowband, electrically switchable, and high-effici...
Graphene is a two-dimensional material with intriguing electrical and optical properties for infrare...
Research on nanophotonic structures for three application areas is described, a near perfect optical...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
We investigate the absorption enhancement of an unstructured graphene sheet in a broad frequency ran...
We report a small-angle ultra-narrowband mid-infrared tunable absorber that uses graphene and dielec...
Ultrafast electrically driven nanoscale light sources are critical components in nanophotonics. Comp...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...