A new, transparent, metal-free absorber, based on the use of multilayer graphene/dielectric laminates (GLs), is proposed for applications in the low-terahertz frequency range. The designed absorber has a total thickness of around 70 µm and consists of a front matching dielectric layer followed by a GL, a dielectric spacer and a back GL. The laminates are periodic structures constituted of graphene sheets separated by 50-nm-thick polyethylene terephthalate (PET) interlayers, while the matching layer and the spacer are one-quarter-wavelength thick and made of PET. The GLs are modeled as homogeneous-equivalent single layers (ESLs) characterized by their sheet resistances Rs. An innovative analytical method is proposed in order to select Rs val...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
The development of transparent radio-frequency electronics has been limited, until recently, by the ...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
A graphene-based controllable broadband terahertz metamaterial absorber with transmission band is pr...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
The development of transparent radio-frequency electronics has been limited, until recently, by the ...
The design of new transparent and metal-free absorbers for the upcoming wireless fifth-generation (5...
The applications of terahertz waves and metamaterials in electromagnetic wave absorbers are one of t...
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...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
The development of transparent radio-frequency electronics has been limited, until recently, by the ...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
A graphene-based controllable broadband terahertz metamaterial absorber with transmission band is pr...
Graphene is a powerful 2-D matter with the capability of extraordinary transparency, and tunable con...
The development of transparent radio-frequency electronics has been limited, until recently, by the ...
The design of new transparent and metal-free absorbers for the upcoming wireless fifth-generation (5...
The applications of terahertz waves and metamaterials in electromagnetic wave absorbers are one of t...
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...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
This article presents novel graphene-based absorber materials which can be directly integrated in te...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
This article presents novel graphene-based absorber materials which can be directly integrated in te...