We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and double-layer decussate graphene ribbon arrays. The simulated results show that the proposed absorbers have narrowband near-unity terahertz absorption with ultra-wide frequency reconfiguration and angular stability. By tuning the Fermi level of graphene ribbons, the over 90% absorbance peak frequency of the absorber with single-layer graphene structure can be flexibly adjusted from 6.85 to 9.85 THz for both the transverse magnetic (TM) and transverse electric (TE) polarizations. This absorber with single-layer graphene demonstrates excellent angular stability with the absorbance peaks of the reconfigurable absorption bands remaining over 99.8...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
A graphene metamaterial and strontium titanate (STO)-based terahertz absorber with tunable and switc...
In this paper, we demonstrate a tunable periodic hourglass‐shaped graphene arrays absorber in the in...
We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and...
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...
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 ...
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...
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...
In this paper, we theoretically designed and numerically analyzed an ultrabroadband meta-absorber wi...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
A graphene metamaterial and strontium titanate (STO)-based terahertz absorber with tunable and switc...
In this paper, we demonstrate a tunable periodic hourglass‐shaped graphene arrays absorber in the in...
We propose and numerically demonstrate two novel terahertz absorbers made up of periodic single- and...
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...
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 ...
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...
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...
In this paper, we theoretically designed and numerically analyzed an ultrabroadband meta-absorber wi...
A polarization-insensitive broadband terahertz absorber with a sandwich structure of metal–dielectri...
A graphene metamaterial and strontium titanate (STO)-based terahertz absorber with tunable and switc...
In this paper, we demonstrate a tunable periodic hourglass‐shaped graphene arrays absorber in the in...