The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz light represents a fundamental step for many different applications. Split-ring resonators, subwavelength metamaterial elements exhibiting broad resonances that are easily tuned lithographically, represent the ideal route to achieve such optical control of the incident light. We have realized a design based on the interplay between metallic split rings and the electronic properties of a graphene monolayer integrated into a single device. By acting on the doping level of graphene, an active modulation of the optical intensity was achieved in the frequency range between 2.2 and 3.1 THz, with a maximum modulation depth of 18%
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Terahertz (THz) research has experienced impressive progress in recent decades, with unique applicat...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
Split-ring resonators represent the ideal route to achieve optical control of the incident light at ...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
Terahertz (THz) frequency technology has many potential applications in nondestructive imaging, spec...
Terahertz (THz) frequency technology has many potential applications in nondestructive imaging, spec...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Terahertz (THz) research has experienced impressive progress in recent decades, with unique applicat...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
Split-ring resonators represent the ideal route to achieve optical control of the incident light at ...
We realized an optical modulator working at terahertz frequencies, based on the interplay between sp...
Terahertz (THz) frequency technology has many potential applications in nondestructive imaging, spec...
Terahertz (THz) frequency technology has many potential applications in nondestructive imaging, spec...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Terahertz (THz) research has experienced impressive progress in recent decades, with unique applicat...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...