We show that perfect absorption can be achieved in a system comprising a single lossy dielectric layer of thickness much smaller than the incident wavelength on an opaque substrate by utilizing the nontrivial phase shifts at interfaces between lossy media. This design is implemented with an ultra-thin (∼λ/65) vanadium dioxide (VO2) layer on sapphire, temperature tuned in the vicinity of the VO2 insulator-to-metal phase transition, leading to 99.75% absorption at λ = 11.6 μm. The structural simplicity and large tuning range (from ∼80% to 0.25% in reflectivity) are promising for thermal emitters, modulators, and bolometers
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
Protection of human eyes or sensitive detectors from high-intensity laser radiation is an important ...
A photonic switch is an integral part of optical telecommunication systems. A plasmonic bandpass fil...
We show that perfect absorption can be achieved in a system comprising a single lossy dielectric lay...
The temperature tunability of complex dielectric constants of vanadium dioxide (VO2) makes it a prom...
abstract: Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selecti...
© OSA 2015. We show that perfect absorption can be achieved in ultra-thin gratings composed of weakl...
We investigated infrared reflectivity of undoped and Tungsten (W) doped Vanadium dioxide (VO2) films...
Two biomimetic, moth-eye structure, perfect absorbers in the visible and near infrared regions are i...
Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selective resonan...
© 2022 American Chemical Society.Reconfigurable light absorbers have attracted much attention by pro...
An ultra-thin perfect absorber for deep ultraviolet light was realized using an Al/TiO2/AlN system. ...
abstract: We numerically demonstrate a switchable metamaterial absorber/emitter by thermally turning...
Resonant absorbers based on plasmonic materials, metamaterials, and thin films enable spectrally sel...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
Protection of human eyes or sensitive detectors from high-intensity laser radiation is an important ...
A photonic switch is an integral part of optical telecommunication systems. A plasmonic bandpass fil...
We show that perfect absorption can be achieved in a system comprising a single lossy dielectric lay...
The temperature tunability of complex dielectric constants of vanadium dioxide (VO2) makes it a prom...
abstract: Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selecti...
© OSA 2015. We show that perfect absorption can be achieved in ultra-thin gratings composed of weakl...
We investigated infrared reflectivity of undoped and Tungsten (W) doped Vanadium dioxide (VO2) films...
Two biomimetic, moth-eye structure, perfect absorbers in the visible and near infrared regions are i...
Plasmonic and metamaterial based nano/micro-structured materials enable spectrally selective resonan...
© 2022 American Chemical Society.Reconfigurable light absorbers have attracted much attention by pro...
An ultra-thin perfect absorber for deep ultraviolet light was realized using an Al/TiO2/AlN system. ...
abstract: We numerically demonstrate a switchable metamaterial absorber/emitter by thermally turning...
Resonant absorbers based on plasmonic materials, metamaterials, and thin films enable spectrally sel...
Metamaterial absorbers (MMAs) with dynamic tuning features have attracted great attention recently, ...
We propose a metamaterial saturable absorber mirror at midinfrared wavelengths that can show a satur...
Protection of human eyes or sensitive detectors from high-intensity laser radiation is an important ...
A photonic switch is an integral part of optical telecommunication systems. A plasmonic bandpass fil...