Two biomimetic, moth-eye structure, perfect absorbers in the visible and near infrared regions are introduced and investigated. The moth-eye structure is made up of vanadium oxide (VO2), which is a phase change material that changes from an insulator state to a metallic state at around 85 degrees C. The VO2 structure sits on top of a sapphire (Al2O3) dielectric spacer layer, above a gold (Au) back reflector. Two perfect absorbers are designed, one with perfect absorption over an ultra-broadband range between 400 and 1,600nm, for both the insulating and metallic phases, while the second can switch between being a perfect absorber or not in the range 1,000 and 1,600nm. The absorption profiles and electric and magnetic fields are examined and ...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
As the quest for active photonic devices continues, materials with exotic and exploitable properties...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...
Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selective resonan...
We show that perfect absorption can be achieved in a system comprising a single lossy dielectric lay...
Using the simple interference interactions in a three-layer thin film structure, absorbers in the ne...
This paper proposes a novel model for an high-efficiency tunable broadband near-infrared absorber. T...
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
Resonant absorbers based on plasmonic materials, metamaterials, and thin films enable spectrally sel...
© 2022 American Chemical Society.Reconfigurable light absorbers have attracted much attention by pro...
abstract: Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selecti...
Metamaterial absorber/emitter is an important aspect of infrared radiation manipulation. In this pap...
A metamaterial consisting of an array of gold micro-disks, separated from a ground plane of indium t...
In this study, an ultra-wideband actively tunable terahertz absorber composed of four identical arc-...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
As the quest for active photonic devices continues, materials with exotic and exploitable properties...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...
Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selective resonan...
We show that perfect absorption can be achieved in a system comprising a single lossy dielectric lay...
Using the simple interference interactions in a three-layer thin film structure, absorbers in the ne...
This paper proposes a novel model for an high-efficiency tunable broadband near-infrared absorber. T...
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
Resonant absorbers based on plasmonic materials, metamaterials, and thin films enable spectrally sel...
© 2022 American Chemical Society.Reconfigurable light absorbers have attracted much attention by pro...
abstract: Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selecti...
Metamaterial absorber/emitter is an important aspect of infrared radiation manipulation. In this pap...
A metamaterial consisting of an array of gold micro-disks, separated from a ground plane of indium t...
In this study, an ultra-wideband actively tunable terahertz absorber composed of four identical arc-...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
Achieving actively tunable metamaterial absorption is a significant development direction. Phase-tra...
As the quest for active photonic devices continues, materials with exotic and exploitable properties...
This paper proposes a thermally controlled multifunctional metamaterial absorber with switchable wid...