In this Letter we demonstrate a fundamentally new, to the best of our knowledge, concept to enhance the magnetic modulation of the surface plasmon polaritons (SPPs) by using hybrid magneto-plasmonic structures consisting of hyperbolic plasmonic metasurfaces and magnetic dielectric substrates. Our results show that the magnetic modulation of SPPs in the proposed structures can be an order of magnitude stronger than in the hybrid metal-ferromagnet multilayer structures conventionally used in active magneto-plasmonics. We believe that this effect will allow for the further miniaturization of magneto-plasmonic devices
The spectrally controllable enhancement of the transverse magneto-optical Kerr effect is realized in...
Comunicación presentada en el 2nd Early Stage Researchers Workshop in Nanoscience, celebrado en Madr...
The magnetic field is an interesting candidate for the development of active plasmonic devices as it...
In this Letter we demonstrate a fundamentally new, to the best of our knowledge, concept to enhance ...
This thesis investigates the effect of the magnetic field on propagating surface plasmon polaritons ...
Trabajo presentado en el Nonlinear Nanophotonics meets Nanomagnetism workshop, celebrado en Le Mans ...
The deposition of a dielectric overlayer on top of Au/Co/Au multilayer films can significantly enhan...
A fundamental cornerstone in nanophotonics is the ability to achieve hyperbolic dispersion of surfac...
The main features of surface plasmon polaritons (SPPs) that can propagate in a metamaterial–magnetic...
Tailoring surface plasmon (SP) resonances using metallic nanostructures for optical manipulation has...
Comunicación presentada en la Donostia International Conference on Nanoscaled Magnetism and Applicat...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
Harnessing artificial optical magnetism has previously required complex two- and three-dimensional s...
Subwavelength composite materials constitute an interesting path towards the development of material...
Comunicación presentada en el 2nd Early Stage Researchers Workshop in Nanoscience, celebrado en Madr...
The spectrally controllable enhancement of the transverse magneto-optical Kerr effect is realized in...
Comunicación presentada en el 2nd Early Stage Researchers Workshop in Nanoscience, celebrado en Madr...
The magnetic field is an interesting candidate for the development of active plasmonic devices as it...
In this Letter we demonstrate a fundamentally new, to the best of our knowledge, concept to enhance ...
This thesis investigates the effect of the magnetic field on propagating surface plasmon polaritons ...
Trabajo presentado en el Nonlinear Nanophotonics meets Nanomagnetism workshop, celebrado en Le Mans ...
The deposition of a dielectric overlayer on top of Au/Co/Au multilayer films can significantly enhan...
A fundamental cornerstone in nanophotonics is the ability to achieve hyperbolic dispersion of surfac...
The main features of surface plasmon polaritons (SPPs) that can propagate in a metamaterial–magnetic...
Tailoring surface plasmon (SP) resonances using metallic nanostructures for optical manipulation has...
Comunicación presentada en la Donostia International Conference on Nanoscaled Magnetism and Applicat...
We study how to enhance the transverse magneto-optical Kerr effect (TMOKE) of ultra-thin magnetic di...
Harnessing artificial optical magnetism has previously required complex two- and three-dimensional s...
Subwavelength composite materials constitute an interesting path towards the development of material...
Comunicación presentada en el 2nd Early Stage Researchers Workshop in Nanoscience, celebrado en Madr...
The spectrally controllable enhancement of the transverse magneto-optical Kerr effect is realized in...
Comunicación presentada en el 2nd Early Stage Researchers Workshop in Nanoscience, celebrado en Madr...
The magnetic field is an interesting candidate for the development of active plasmonic devices as it...