Abstract Plasmonically induced transparency (PIT) in a multicavity-coupled graphene-based waveguide system is investigated theoretically and numerically. By using the finite element method (FEM), the multiple mode effect can be achieved, and blue shift is exhibited by tunable altering the chemical potential of the monolayer graphene. We find that the increasing number of the graphene rectangle cavity (GRC) achieves the multiple PIT peaks. In addition, we find that the PIT peaks reduce to just one when the distance between the third cavity and the second one is 100\ua0nm. Easily to be experimentally fabricated, this graphene-based waveguide system has many potential applications for the advancement of 3D ultra-compact, high-pe...
The dielectric cylinder covered with graphene (DCCG) is found to be a promising platform for studyin...
Plasmon induced transparency (PIT) has been numerically investigated and experimentally realized by ...
Abstract Novel hybrid metal-graphene metamaterials featuring dynamically controllable single, double...
A multiple plasmon-induced transparency (PIT) device operated in the mid-infrared region has been pr...
Abstract A graphene-based on-chip plasmonic nanostructure composed of a plasmonic bus waveguide side...
By taking a graphene nanoribbon as a resonator, we have numerically and analytically investigated th...
We present plasmonic devices, consisting of periodic arrays of graphene nanoribbons (GNRs) and a gra...
In this paper, we design a multifunctional micro-nano device with a hybrid metamaterial-waveguide sy...
We achieve the effective modulation of coupled-resonator-induced transparency (CRIT) in a photonic c...
A monolayer-graphene-based concentric-double-rings (CDR) structure is reported to achieve broadband ...
We have proposed a graphene-integrated Fabry-Perot microcavity for efficient modulation of spatial l...
A modulation principle and method, the gate-voltage-controlled mode-guiding switching/mode-cutoff me...
We theoretically investigate a plasmonic waveguide modulator using grating-assisted coupling to a gr...
In this paper, we numerically and theoretically investigate the propagation of surface plasmon polar...
We propose a graphene/planar waveguide hybrid structure, and demonstrate total absorption in the vis...
The dielectric cylinder covered with graphene (DCCG) is found to be a promising platform for studyin...
Plasmon induced transparency (PIT) has been numerically investigated and experimentally realized by ...
Abstract Novel hybrid metal-graphene metamaterials featuring dynamically controllable single, double...
A multiple plasmon-induced transparency (PIT) device operated in the mid-infrared region has been pr...
Abstract A graphene-based on-chip plasmonic nanostructure composed of a plasmonic bus waveguide side...
By taking a graphene nanoribbon as a resonator, we have numerically and analytically investigated th...
We present plasmonic devices, consisting of periodic arrays of graphene nanoribbons (GNRs) and a gra...
In this paper, we design a multifunctional micro-nano device with a hybrid metamaterial-waveguide sy...
We achieve the effective modulation of coupled-resonator-induced transparency (CRIT) in a photonic c...
A monolayer-graphene-based concentric-double-rings (CDR) structure is reported to achieve broadband ...
We have proposed a graphene-integrated Fabry-Perot microcavity for efficient modulation of spatial l...
A modulation principle and method, the gate-voltage-controlled mode-guiding switching/mode-cutoff me...
We theoretically investigate a plasmonic waveguide modulator using grating-assisted coupling to a gr...
In this paper, we numerically and theoretically investigate the propagation of surface plasmon polar...
We propose a graphene/planar waveguide hybrid structure, and demonstrate total absorption in the vis...
The dielectric cylinder covered with graphene (DCCG) is found to be a promising platform for studyin...
Plasmon induced transparency (PIT) has been numerically investigated and experimentally realized by ...
Abstract Novel hybrid metal-graphene metamaterials featuring dynamically controllable single, double...