In this study, an ultra-wideband actively tunable terahertz absorber composed of four identical arc-shaped structures made of phase transition material vanadium dioxide (VO2) is presented. A metal ground plane is placed at the bottom and an insulating spacer (quartz) as the middle dielectric layer. Simulation results demonstrate 90% absorption with a broad bandwidth spanning 3 THz (2.7 THz–5.7 THz) under normal incidence. The proposed structure transforms from a reflector to an absorber by changing the conductivity from 200 S/m to 2 × 105 S/m; the absorbance at peak frequencies can be consistently tuned from 4% to 100%. Absorption spectra demonstrate that the polarization angle does not affect the response of the proposed structure. Power l...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
International audienceVandium dioxide (VO2) shows promise as the basis for a terahertz wave modulato...
International audienceVandium dioxide (VO2) shows promise as the basis for a terahertz wave modulato...
Based on the phase transition of vanadium dioxide(VO2), an ultra-broadband tunable terahertz metamat...
In this paper, a tunable metamaterial perfect absorber based on vanadium dioxide (VO2) is designed i...
A dual broadband terahertz bifunction absorber that can be actively tuned is proposed. The optical p...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
A terahertz switchable metamaterial is presented with bifunctional properties of absorption and elec...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...
Terahertz metamaterials for broadband, high modulation depth modulating, and tunable dual-band absor...
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...
Terahertz metamaterial plays a significant role in the development of imaging, sensing, and communic...
In this paper, a new type of terahertz (THz) metamaterial (MM) modulator has been presented with bif...
In this paper, we report a switchable ultra-wideband metamaterial absorber with polarization-insensi...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
International audienceVandium dioxide (VO2) shows promise as the basis for a terahertz wave modulato...
International audienceVandium dioxide (VO2) shows promise as the basis for a terahertz wave modulato...
Based on the phase transition of vanadium dioxide(VO2), an ultra-broadband tunable terahertz metamat...
In this paper, a tunable metamaterial perfect absorber based on vanadium dioxide (VO2) is designed i...
A dual broadband terahertz bifunction absorber that can be actively tuned is proposed. The optical p...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
A terahertz switchable metamaterial is presented with bifunctional properties of absorption and elec...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...
Terahertz metamaterials for broadband, high modulation depth modulating, and tunable dual-band absor...
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...
Terahertz metamaterial plays a significant role in the development of imaging, sensing, and communic...
In this paper, a new type of terahertz (THz) metamaterial (MM) modulator has been presented with bif...
In this paper, we report a switchable ultra-wideband metamaterial absorber with polarization-insensi...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
International audienceVandium dioxide (VO2) shows promise as the basis for a terahertz wave modulato...
International audienceVandium dioxide (VO2) shows promise as the basis for a terahertz wave modulato...