Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ultra-compact photonic components with reconfigurable applications. Here we consider a graphene monolayer subject to a spatially periodic gate bias, which, thank to surface plasmons in the graphene, acts as a tunable and extremely compact metasurface for terahertz radiation. After characterizing its functionality, we show that it serves as the basic building block of an ultrathin complete absorber. In this subwavelength-thickness device, transmission and reflection channels are blocked and electromagnetic energy is completely absorbed by the metasurface building blocks. The proposed structure can be used as a modulator, and its frequency of ope...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibil- ity of ...
By exploiting singular spatial modulations of the graphene conductivity, we design a broadband, tuna...
We demonstrate a tunable plasmonic metasurface by considering a graphene sheet subject to a periodic...
The spatial tunability of the electron density in graphene enables the dynamic engineering of metasu...
Dynamically reconfigurable metasurfaces open up unprecedented opportunities in applications such as ...
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...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
We propose a plasmon induced tunable metasurface for multiband superabsorption and terahertz sensing...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibil- ity of ...
By exploiting singular spatial modulations of the graphene conductivity, we design a broadband, tuna...
We demonstrate a tunable plasmonic metasurface by considering a graphene sheet subject to a periodic...
The spatial tunability of the electron density in graphene enables the dynamic engineering of metasu...
Dynamically reconfigurable metasurfaces open up unprecedented opportunities in applications such as ...
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...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
We propose a plasmon induced tunable metasurface for multiband superabsorption and terahertz sensing...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...