Terahertz (THz) field enhancement has significant applications in high-resolution imaging, next-generation wireless communications, and networking. In this work, we experimentally demonstrate a graphene metasurface for THz field enhancement that is based on the intervalley scattering theory. Each meta-atom of the metasurface is composed of one split-ring resonator (SRR) embedded in one graphene patch. The experimental results show that, by electrically adjusting the conductivity of the graphene patch, the THz field through the entire sample is enhanced by 23 times and the transmission amplitude at 0.47 THz decreases 8.4 dB. Moreover, the maximum phase difference at 0.43 THz reaches 88°. The experiment shows good agreement with simulation. ...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Control over the optical response of graphene metasurfaces enables many promising applications in te...
Graphene is proving to be an efficient medium for the control of mm-wave/THz radiation. Its electric...
We demonstrate efficient terahertz (THz) modulation by coupling graphene strongly with a broadband T...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
ABSTRACT: Gate-controllable transmission of terahertz (THz) radiation makes graphene a promising mat...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
We demonstrate metamaterial-based electro-absorption THz modulators employing frequency-selective-su...
The interaction of large-area single-layer CVD-graphene with a metasurface constituted by THz split-...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
In this study, first-principles time-dependent density functional theory calculations were used to d...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Control over the optical response of graphene metasurfaces enables many promising applications in te...
Graphene is proving to be an efficient medium for the control of mm-wave/THz radiation. Its electric...
We demonstrate efficient terahertz (THz) modulation by coupling graphene strongly with a broadband T...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
ABSTRACT: Gate-controllable transmission of terahertz (THz) radiation makes graphene a promising mat...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
We demonstrate metamaterial-based electro-absorption THz modulators employing frequency-selective-su...
The interaction of large-area single-layer CVD-graphene with a metasurface constituted by THz split-...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
In this study, first-principles time-dependent density functional theory calculations were used to d...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Control over the optical response of graphene metasurfaces enables many promising applications in te...
Graphene is proving to be an efficient medium for the control of mm-wave/THz radiation. Its electric...