A monolayer-graphene-based concentric-double-rings (CDR) structure is reported to achieve broadband plasmon-induced transparency (PIT) on the strength of edge mode in the mid-infrared regime. The theoretical analysis and simulation results reveal that the structure designed here has two plasmonic resonance peaks at 39.1 and 55.4 THz, and a transparency window with high transmission amplitude at the frequency of 44.1 THz. Based on the edge mode coupling between neighbor graphene ribbons, PIT phenomenon is produced through the interference between different (bright and dark) modes. The frequency and bandwidth of the transparency window and slow light time could be effectively adjusted and controlled via changing geometrical parameters of grap...
By taking a graphene nanoribbon as a resonator, we have numerically and analytically investigated th...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
<p> We propose an efficient modulation of linearly polarized infrared light using graphene metamate...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
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...
A tunable electromagnetically-induced-transparency–like (EIT-like) device is proposed numerically an...
In the phenomenon of plasmon-induced transparency, which is a classical analogue of electromagnetica...
We propose a graphene plasmonic structure by applying two graphene layers mingled with a thin gold l...
A bifunctional tunable metamaterial composed of pattern metal structure, graphene, and strontium tit...
In this paper, we propose a metamaterial structure for realizing the electromagnetically induced tra...
In the phenomenon of plasmon-induced transparency, which is a classical analogue of electromagnetica...
In this paper, we design a multifunctional micro-nano device with a hybrid metamaterial-waveguide sy...
We present plasmonic devices, consisting of periodic arrays of graphene nanoribbons (GNRs) and a gra...
By taking a graphene nanoribbon as a resonator, we have numerically and analytically investigated th...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
<p> We propose an efficient modulation of linearly polarized infrared light using graphene metamate...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
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...
A tunable electromagnetically-induced-transparency–like (EIT-like) device is proposed numerically an...
In the phenomenon of plasmon-induced transparency, which is a classical analogue of electromagnetica...
We propose a graphene plasmonic structure by applying two graphene layers mingled with a thin gold l...
A bifunctional tunable metamaterial composed of pattern metal structure, graphene, and strontium tit...
In this paper, we propose a metamaterial structure for realizing the electromagnetically induced tra...
In the phenomenon of plasmon-induced transparency, which is a classical analogue of electromagnetica...
In this paper, we design a multifunctional micro-nano device with a hybrid metamaterial-waveguide sy...
We present plasmonic devices, consisting of periodic arrays of graphene nanoribbons (GNRs) and a gra...
By taking a graphene nanoribbon as a resonator, we have numerically and analytically investigated th...
Light incident on a metallic structure excites collective oscillations of electrons termed as plasmo...
<p> We propose an efficient modulation of linearly polarized infrared light using graphene metamate...