The introduction of narrow band perfect absorbers (PAs) operating in mid-infrared (IR) frequencies has the potential to improve the study of biomolecule monolayers using surface enhanced vibrational spectroscopy. However, wavelength dependent radiation and nonradiative losses are limiting factors to obtain narrow band absorption resonance, having full width at half maximum (FWHM) below 150 cm(-1) in the mid-IR frequency range. In this work, we numerically and experimentally present an engineered narrow band PA with FWHM of 85 cm(-1) operating in mid-IR frequencies. The PA is based on multi-layer metamaterial plasmonic nanoantennas. We used numerical and experimental work to fine tune the parameters of the PA in order to control its spectral...
Novel two-dimensional metamaterials, known as metasurfaces, have emerged as a breakthrough platform ...
We report high performance Infrared spectroscopy platforms based on interference coatings on metal u...
The spectral shift between near- and far-field responses of the plasmonic nanoantennas has negative ...
Realizing strong plasmon–vibration interactions between infrared-active vibrational bands and resona...
Plasmonic perfect absorbers (PPAs) have promising properties to be utilized in molecular sensing and...
Metallic nanostructures composed of nano-sized interparticle distances have been proven to exhibit e...
WOS:000445264000021Recently perfect absorbers (PAs) have received significant interest due to their ...
Engineered plasmonic nanostructures have emerged as powerful sensing platforms and are promoting nov...
We propose antenna-enhanced infrared vibrational spectroscopy by adopting single-sized Al disks on A...
The emerging field of plasmonic metamaterials has introduced new degree of freedom to manipulate opt...
Nowadays, accessing to new electromagnetic properties can be realized by fabricating metamaterials c...
<p>Metasurfaces are investigated intensively for biophotonics applications due to their resonant wav...
A plasmonic perfect absorber (PA) utilizes high absorption of incident radiation and near-field enha...
Infrared absorption spectroscopy has greatly benefited from the electromagnetic field enhancement of...
In this paper, III-IV semiconductors are demonstrated as strong candidates for plasmonics applicatio...
Novel two-dimensional metamaterials, known as metasurfaces, have emerged as a breakthrough platform ...
We report high performance Infrared spectroscopy platforms based on interference coatings on metal u...
The spectral shift between near- and far-field responses of the plasmonic nanoantennas has negative ...
Realizing strong plasmon–vibration interactions between infrared-active vibrational bands and resona...
Plasmonic perfect absorbers (PPAs) have promising properties to be utilized in molecular sensing and...
Metallic nanostructures composed of nano-sized interparticle distances have been proven to exhibit e...
WOS:000445264000021Recently perfect absorbers (PAs) have received significant interest due to their ...
Engineered plasmonic nanostructures have emerged as powerful sensing platforms and are promoting nov...
We propose antenna-enhanced infrared vibrational spectroscopy by adopting single-sized Al disks on A...
The emerging field of plasmonic metamaterials has introduced new degree of freedom to manipulate opt...
Nowadays, accessing to new electromagnetic properties can be realized by fabricating metamaterials c...
<p>Metasurfaces are investigated intensively for biophotonics applications due to their resonant wav...
A plasmonic perfect absorber (PA) utilizes high absorption of incident radiation and near-field enha...
Infrared absorption spectroscopy has greatly benefited from the electromagnetic field enhancement of...
In this paper, III-IV semiconductors are demonstrated as strong candidates for plasmonics applicatio...
Novel two-dimensional metamaterials, known as metasurfaces, have emerged as a breakthrough platform ...
We report high performance Infrared spectroscopy platforms based on interference coatings on metal u...
The spectral shift between near- and far-field responses of the plasmonic nanoantennas has negative ...