This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wideband absorption and transmission at the THz band based on resistive film and vanadium dioxide (VO2). The function of the absorber can be adjusted by changing the phase transition characteristics of VO2. When VO2 is in a metallic state, the absorber can achieve wideband absorption with above 90% absorption from 3.31 THz to 10 THz and exhibits excellent absorption performance under a wide range of incident and polarization angles. When VO2 is in an insulating state, the metamaterial acts in transmission mode with a transmission coefficient of up to 61% at 5.15 THz. The transmission region is inside the absorption band, which is very important ...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A dual broadband terahertz bifunction absorber that can be actively tuned is proposed. The optical p...
A terahertz switchable metamaterial is presented with bifunctional properties of absorption and elec...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
In this paper, a new type of terahertz (THz) metamaterial (MM) modulator has been presented with bif...
In this study, an ultra-wideband actively tunable terahertz absorber composed of four identical arc-...
Based on the phase transition of vanadium dioxide(VO2), an ultra-broadband tunable terahertz metamat...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
AbstractWe demonstrated a metamaterial absorber (MMA), which can be controlled by variation of condu...
In this paper, we report a switchable ultra-wideband metamaterial absorber with polarization-insensi...
Terahertz metamaterial plays a significant role in the development of imaging, sensing, and communic...
In this study, we use a phase-changing material vanadium dioxide (VO2) to design a multilayer metasu...
In this study, we use a phase-changing material vanadium dioxide (VO2) to design a multilayer metasu...
In this paper, a tunable metamaterial perfect absorber based on vanadium dioxide (VO2) is designed i...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A dual broadband terahertz bifunction absorber that can be actively tuned is proposed. The optical p...
A terahertz switchable metamaterial is presented with bifunctional properties of absorption and elec...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
In this paper, a new type of terahertz (THz) metamaterial (MM) modulator has been presented with bif...
In this study, an ultra-wideband actively tunable terahertz absorber composed of four identical arc-...
Based on the phase transition of vanadium dioxide(VO2), an ultra-broadband tunable terahertz metamat...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
AbstractWe demonstrated a metamaterial absorber (MMA), which can be controlled by variation of condu...
In this paper, we report a switchable ultra-wideband metamaterial absorber with polarization-insensi...
Terahertz metamaterial plays a significant role in the development of imaging, sensing, and communic...
In this study, we use a phase-changing material vanadium dioxide (VO2) to design a multilayer metasu...
In this study, we use a phase-changing material vanadium dioxide (VO2) to design a multilayer metasu...
In this paper, a tunable metamaterial perfect absorber based on vanadium dioxide (VO2) is designed i...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A dual broadband terahertz bifunction absorber that can be actively tuned is proposed. The optical p...