National Natural Science Foundation of China [61405217, 61127013, 61308077, 61308073]Complete absorption in a graphene monolayer at terahertz frequency through the critical coupling effect is investigated. It is achieved by sandwiching the graphene monolayer between a dielectric grating and a Bragg grating. The designed graphene absorber exhibits near-unity absorption at resonance but with an ultranarrow spectrum and antenna-like response, which is attributed to the combined effects of guided mode resonance with dielectric grating and the photonic band gap with Bragg grating. In addition to numerical simulation, the electric field distributions are also illustrated to provide a physical understanding of the perfect absorption effect. Furthe...
In this paper, we demonstrate a tunable periodic hourglass‐shaped graphene arrays absorber in the in...
We experimentally demonstrated significant enhancement of terahertz-wave absorption in monolayer gra...
Graphene has unique properties which make it an ideal material for photonic and optoelectronic devic...
We investigate the absorption enhancement of an unstructured graphene sheet in a broad frequency ran...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
The applications of terahertz waves and metamaterials in electromagnetic wave absorbers are one of t...
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...
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...
Tunable terahertz absorption in the interface between graphene and dielectric Bragg reflector (DBR) ...
In this paper, we theoretically designed and numerically analyzed an ultrabroadband meta-absorber wi...
The gate-tunable absorption of graphene layers with a resonant metal back reflector (RMBF) is theore...
In this paper, we demonstrate a tunable periodic hourglass‐shaped graphene arrays absorber in the in...
We experimentally demonstrated significant enhancement of terahertz-wave absorption in monolayer gra...
Graphene has unique properties which make it an ideal material for photonic and optoelectronic devic...
We investigate the absorption enhancement of an unstructured graphene sheet in a broad frequency ran...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
The applications of terahertz waves and metamaterials in electromagnetic wave absorbers are one of t...
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...
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...
Tunable terahertz absorption in the interface between graphene and dielectric Bragg reflector (DBR) ...
In this paper, we theoretically designed and numerically analyzed an ultrabroadband meta-absorber wi...
The gate-tunable absorption of graphene layers with a resonant metal back reflector (RMBF) is theore...
In this paper, we demonstrate a tunable periodic hourglass‐shaped graphene arrays absorber in the in...
We experimentally demonstrated significant enhancement of terahertz-wave absorption in monolayer gra...
Graphene has unique properties which make it an ideal material for photonic and optoelectronic devic...