Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable conductivity is employed in emerging optoelectronics devices. In this article, the design of an electrically tunable graphene-based perfect terahertz absorber is proposed and evaluated numerically. The introduced structure is composed of two graphene layers with a sharp absorption peak in the terahertz band. These graphene layers are combline and stripline separated by the insulator substrate. The position of the absorption peak is tunable on the absorption band by means of manipulation in geometric parameters of the combline graphene layer. Furthermore, the intensity and frequency of the absorption peak can be flexibly modulated by varying Ferm...
We numerically demonstrate a broadband terahertz (THz) absorber that is based on a hybrid-patterned ...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
Advances in the efficient manipulation of terahertz waves are crucial for the further development of...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
Graphene material, due to its unique conductivity and transparency properties, is utilized extensive...
Graphene material, due to its unique conductivity and transparency properties, is utilized extensive...
We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and...
We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and...
The applications of terahertz waves and metamaterials in electromagnetic wave absorbers are one of t...
| openaire: EC/H2020/736876/EU//VISORSURFIt is commonly believed that weak light-matter interactions...
| openaire: EC/H2020/736876/EU//VISORSURFIt is commonly believed that weak light-matter interactions...
We numerically demonstrate a broadband terahertz (THz) absorber that is based on a hybrid-patterned ...
We numerically demonstrate a broadband terahertz (THz) absorber that is based on a hybrid-patterned ...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
Advances in the efficient manipulation of terahertz waves are crucial for the further development of...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
Graphene material, due to its unique conductivity and transparency properties, is utilized extensive...
Graphene material, due to its unique conductivity and transparency properties, is utilized extensive...
We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and...
We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and...
The applications of terahertz waves and metamaterials in electromagnetic wave absorbers are one of t...
| openaire: EC/H2020/736876/EU//VISORSURFIt is commonly believed that weak light-matter interactions...
| openaire: EC/H2020/736876/EU//VISORSURFIt is commonly believed that weak light-matter interactions...
We numerically demonstrate a broadband terahertz (THz) absorber that is based on a hybrid-patterned ...
We numerically demonstrate a broadband terahertz (THz) absorber that is based on a hybrid-patterned ...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
Advances in the efficient manipulation of terahertz waves are crucial for the further development of...