In this paper, a novel method to realize a dynamically tunable analogue of EIT for the resonance strength rather than the resonance frequency is proposed in the terahertz spectrum. The introduced method is composed of a metal EIT-like structure, in which a distinct EIT phenomenon resulting from the near field coupling between bright and dark mode resonators can be obtained, as well as an integrated monolayer graphene ribbon under the dark mode resonator that can continuously adjust the resonance strength of transparency peak by changing the Fermi level of the graphene. Comparing structures that need to be modulated individually for each unit cell of the metamaterials, the proposed modulation mechanism was convenient for achieving synchronou...
We report experimental results of the active switching of electromagnetically induced transparency (...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
We observe the excitation and tuning of electromagnetically induced transparency (EIT) by the interf...
A terahertz metamaterial is presented and numerically investigated to achieve tunable electromagneti...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
A tunable electromagnetically-induced-transparency–like (EIT-like) device is proposed numerically an...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
A graphene-based metamaterial structure composed of multilayer graphene/dielectric stacking configur...
Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator s...
Electromagnetically induced transparency (EIT) arises from coupling between the bright and dark mode...
We propose a graphene plasmonic structure by applying two graphene layers mingled with a thin gold l...
An electromagnetically induced transparency (EIT) analog in hybrid metal–dielectric metamaterials is...
Electromagnetically induced transparency (EIT) based on dielectric metamaterials has attracted atten...
Currently, metasurfaces (MSs) integrating with different active materials have been widely explored ...
Abstract Novel hybrid metal-graphene metamaterials featuring dynamically controllable single, double...
We report experimental results of the active switching of electromagnetically induced transparency (...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
We observe the excitation and tuning of electromagnetically induced transparency (EIT) by the interf...
A terahertz metamaterial is presented and numerically investigated to achieve tunable electromagneti...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
A tunable electromagnetically-induced-transparency–like (EIT-like) device is proposed numerically an...
In this paper, we look at the work of a classical plasmon-induced transparency (PIT) based on metasu...
A graphene-based metamaterial structure composed of multilayer graphene/dielectric stacking configur...
Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator s...
Electromagnetically induced transparency (EIT) arises from coupling between the bright and dark mode...
We propose a graphene plasmonic structure by applying two graphene layers mingled with a thin gold l...
An electromagnetically induced transparency (EIT) analog in hybrid metal–dielectric metamaterials is...
Electromagnetically induced transparency (EIT) based on dielectric metamaterials has attracted atten...
Currently, metasurfaces (MSs) integrating with different active materials have been widely explored ...
Abstract Novel hybrid metal-graphene metamaterials featuring dynamically controllable single, double...
We report experimental results of the active switching of electromagnetically induced transparency (...
Electromagnetically induced transparency (EIT) originates from quantum physics, where a narrow trans...
We observe the excitation and tuning of electromagnetically induced transparency (EIT) by the interf...