Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator structures, have helped to unlock a myriad of terahertz applications, ranging from spectroscopy and imaging to communications. At the same time, due to the inherently versatile dispersion properties of metamaterials, they offer unique platforms for studying intriguing phenomena such as negative refractive index and slow light. Active resonance frequency tuning of a metamaterial working in the terahertz regime is achieved by integrating metal-coupled resonator arrays with electrically tunable graphene. This metamaterial device exploits coupled plasmonic resonators to exhibit an electromagnetically induced transparency analog, resulting in the s...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
A terahertz metamaterial is presented and numerically investigated to achieve tunable electromagneti...
Within the last years there has been a tremendous thrust into research and technology in the THz spe...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
We present the continuous frequency modulation of a metamaterial resonance using selective damping o...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
Metamaterial photonic integrated circuits with arrays of hybrid graphene–superconductor coupled spli...
Metamaterial photonic integrated circuits with arrays of hybrid graphene–superconductor coupled spli...
Metamaterial photonic integrated circuits with arrays of hybrid graphene–superconductor coupled spli...
We present the continuous frequency modulation of a metamaterial resonance using selective damping o...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
A terahertz metamaterial is presented and numerically investigated to achieve tunable electromagneti...
Within the last years there has been a tremendous thrust into research and technology in the THz spe...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
We present the continuous frequency modulation of a metamaterial resonance using selective damping o...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
Metamaterial photonic integrated circuits with arrays of hybrid graphene–superconductor coupled spli...
Metamaterial photonic integrated circuits with arrays of hybrid graphene–superconductor coupled spli...
Metamaterial photonic integrated circuits with arrays of hybrid graphene–superconductor coupled spli...
We present the continuous frequency modulation of a metamaterial resonance using selective damping o...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
A terahertz metamaterial is presented and numerically investigated to achieve tunable electromagneti...
Within the last years there has been a tremendous thrust into research and technology in the THz spe...