Pyramidal metamaterials are currently developed for ultra-broadband absorbers. They consist of periodic arrays of alternating metal/dielectric layers forming truncated square-based pyramids. The metallic layers of increasing lengths play the role of vertically and, to a less extent, laterally coupled plasmonic resonators. Based on detailed numerical simulations, we demonstrate that plasmon hybridization between such resonators helps in achieving ultra-broadband absorption. The dipolar modes of individual resonators are shown to be prominent in the electromagnetic coupling mechanism. Lateral coupling between adjacent pyramids and vertical coupling between alternating layers are proven to be key parameters for tuning of plasmon hybridization....
The transparency of silicon in the infrared region enables the design of nano/microstructures for im...
Resonance absorption mechanism-based metasurface absorbers can realize perfect optical absorption. F...
Metamaterials research has developed perfect absorbers from microwave to optical frequencies, mainly...
Complete absorption of electromagnetic waves is paramount in today's applications, ranging from phot...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The recent rise of metamaterials opens new opportu...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
Nanostructured optical coatings with tailored spectral absorption properties are of interest for a w...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Nanophotonics is an emerging research field that deals with interaction between light and matter in...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
A numerical simulation based on the finite-element method shows that a metamaterial absorber using T...
The transparency of silicon in the infrared region enables the design of nano/microstructures for im...
Resonance absorption mechanism-based metasurface absorbers can realize perfect optical absorption. F...
Metamaterials research has developed perfect absorbers from microwave to optical frequencies, mainly...
Complete absorption of electromagnetic waves is paramount in today's applications, ranging from phot...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim The recent rise of metamaterials opens new opportu...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
A new broadband absorber is investigated for the entire frequency domain of solar light (infrared, v...
Nanostructured optical coatings with tailored spectral absorption properties are of interest for a w...
Plasmonic nanostructures are supporting plasmonic resonances which allow to confine the electromagne...
Resonant plasmonic and metamaterial structures allow for control of fundamental optical processes su...
Nanophotonics is an emerging research field that deals with interaction between light and matter in...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
A numerical simulation based on the finite-element method shows that a metamaterial absorber using T...
The transparency of silicon in the infrared region enables the design of nano/microstructures for im...
Resonance absorption mechanism-based metasurface absorbers can realize perfect optical absorption. F...
Metamaterials research has developed perfect absorbers from microwave to optical frequencies, mainly...