The spatial tunability of the electron density in graphene enables the dynamic engineering of metasurfaces in the form of conductivity gratings, which can bridge the momentum gap between incident radiation and surface plasmons. Here, we discuss singular graphene metasurfaces, whose conductivity is strongly suppressed at the grating valleys. By analytically characterising their plasmonic response via transformation optics, we first review the physical principles underlying these structures, which were recently found to exhibit broadband, tunable THz absorption. We characterise the spectrum with different common substrates and then move to study in further detail how conductivity gratings may be finely tuned by placing an array of charged gol...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Surface Plasmon Polaritons (SPPs) operating in mid-infrared up to terahertz (THz) frequencies have b...
The spatial tunability of the electron density in graphene enables the dynamic engineering of metasu...
The spatial tunability of the electron density in graphene enables the dynamic engineering of metasu...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
By exploiting singular spatial modulations of the graphene conductivity, we design a broadband, tuna...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
In this chapter, we focus on the development on tunable terahertz/infrared metamaterials enabled wit...
We demonstrate a tunable plasmonic metasurface by considering a graphene sheet subject to a periodic...
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 ...
117 pagesGraphene, a single layer material of carbon atoms in a two-dimensional honeycomb lattice na...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Surface Plasmon Polaritons (SPPs) operating in mid-infrared up to terahertz (THz) frequencies have b...
The spatial tunability of the electron density in graphene enables the dynamic engineering of metasu...
The spatial tunability of the electron density in graphene enables the dynamic engineering of metasu...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
By exploiting singular spatial modulations of the graphene conductivity, we design a broadband, tuna...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
Singular graphene metasurfaces, conductivity gratings realized by periodically suppressing the local...
In this chapter, we focus on the development on tunable terahertz/infrared metamaterials enabled wit...
We demonstrate a tunable plasmonic metasurface by considering a graphene sheet subject to a periodic...
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 ...
117 pagesGraphene, a single layer material of carbon atoms in a two-dimensional honeycomb lattice na...
Tunable metasurfaces, whose functionality can be dynamically modified, open up the possibility of ul...
Since the isolation of graphene in 2004, a large amount of research has been directed at 2D material...
Surface Plasmon Polaritons (SPPs) operating in mid-infrared up to terahertz (THz) frequencies have b...