A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide (VO2) ground plane, is shown to switch reversibly between reflective and absorptive states as a function of temperature. The VO2 film, which changes its conductivity by four orders of magnitude across a insulator-metal transition at about 68 degrees C, enables the switching by forming a resonant absorptive structure at high temperatures while being inactive at low temperatures. The fabricated metamaterial shows a modulation of the reflectivity levels of 58% at a frequency of 22.5 THz and 57% at a frequency of 34.5 THz. (C) 2015 Elsevier B.V. All rights reserved
Vanadium dioxide (VO2) is a phase transition material that exhibits metallic or insulating character...
We demonstrate tunable infrared metasurface by utilizing metal-insulator transition material of VO2....
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A metamaterial consisting of an array of gold micro-disks, separated from a ground plane of indium t...
A metamaterial consisting of an array of gold micro-disks, separated from a ground plane of indium t...
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...
AbstractWe demonstrated a metamaterial absorber (MMA), which can be controlled by variation of condu...
In this paper, a new type of terahertz (THz) metamaterial (MM) modulator has been presented with bif...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
abstract: We numerically demonstrate a switchable metamaterial absorber/emitter by thermally turning...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
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...
Vanadium dioxide (VO2) is a phase transition material that exhibits metallic or insulating character...
We demonstrate tunable infrared metasurface by utilizing metal-insulator transition material of VO2....
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...
A tri-layer metamaterial absorber, composed of a metal structure/dielectric spacer/vanadium dioxide ...
A metamaterial consisting of an array of gold micro-disks, separated from a ground plane of indium t...
A metamaterial consisting of an array of gold micro-disks, separated from a ground plane of indium t...
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...
AbstractWe demonstrated a metamaterial absorber (MMA), which can be controlled by variation of condu...
In this paper, a new type of terahertz (THz) metamaterial (MM) modulator has been presented with bif...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
abstract: We numerically demonstrate a switchable metamaterial absorber/emitter by thermally turning...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
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...
Vanadium dioxide (VO2) is a phase transition material that exhibits metallic or insulating character...
We demonstrate tunable infrared metasurface by utilizing metal-insulator transition material of VO2....
International audienceWe designed a tunable metamaterial in the terahertz frequency domain (0.1 - 1 ...