To date, the plasmonic nanostructure utilized for magneto-optical (MO) enhancement has been limited to noble metals with resulted enhancement in the green-red part of visible spectrum. In this study, we fabricated a diffractive hexagonal array composed of Al nanoparticles (NPs) with a thin 7.5 nm ferromagnetic film and pushed the enhanced Faraday rotation (FR) into the blue to green range of the visible light. The freedom and ability to control the working spectral region in the whole visible range from 400 to 800 nm were also demonstrated by changing the lattice constant and the dielectric environment of plasmonic nanostructures. Particularly, in the blue range we obtained the maximum FR 0.57° at 410 nm with a broad boosting region around ...
Nanometer-thin rare-earth–transition-metal (RE–TM) alloys with precisely controlled compositions and...
Metallodielectric nanostructures are enabling a revolution in optics. For centuries optical techniqu...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
This is the final version of the article. Available from Optical Society of America via the DOI in t...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
Plasmonic nanostructures are intriguing materials for applications in optical sensing and enhanced s...
peer reviewedWe introduce a novel magnetoplasmonic sensor concept for sensitive detection of refract...
Póster presentado en Nanolight, celebrado en Benasque (España).Magnetoplasmonics deals with the stud...
Due to their promising properties, surface magneto plasmons have attracted great interests in the fi...
Plasmon resonance induced Faraday rotation enhancement in garnet films offers the promise for develo...
The interaction between light and ferromagnetic nanostructures is investigated in this thesis. Study...
Comunicación presentada en la Conferencia Española de Nanofotónica (CEN2012), celebrada en Carmona (...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
Nanometer-thin rare-earth–transition-metal (RE–TM) alloys with precisely controlled compositions and...
Metallodielectric nanostructures are enabling a revolution in optics. For centuries optical techniqu...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
This is the final version of the article. Available from Optical Society of America via the DOI in t...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
Plasmonic nanostructures are intriguing materials for applications in optical sensing and enhanced s...
peer reviewedWe introduce a novel magnetoplasmonic sensor concept for sensitive detection of refract...
Póster presentado en Nanolight, celebrado en Benasque (España).Magnetoplasmonics deals with the stud...
Due to their promising properties, surface magneto plasmons have attracted great interests in the fi...
Plasmon resonance induced Faraday rotation enhancement in garnet films offers the promise for develo...
The interaction between light and ferromagnetic nanostructures is investigated in this thesis. Study...
Comunicación presentada en la Conferencia Española de Nanofotónica (CEN2012), celebrada en Carmona (...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
Nanometer-thin rare-earth–transition-metal (RE–TM) alloys with precisely controlled compositions and...
Metallodielectric nanostructures are enabling a revolution in optics. For centuries optical techniqu...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...