We develop a perturbative formalism for the interaction of a magneto-optical nanoparticle with a flat surface made of a dielectric or metallic material. The formalism leads to a simple interpretation of the interplay between the purely dielectric and the magneto-optical responses, in terms of excitation of (and radiation by) two orthogonal electric dipoles. We analyze two different routes for the enhancement of the magneto-optical response with respect to the purely dielectric contribution, both based on the nanoparticle-surface interaction. The enhancement is discussed in terms of relevant magneto-optical signals, such as changes in reflectivity, polarization (Kerr) rotation, and ellipticityThis work was supported by the EU Project Nanomag...
The optical and magneto-optical behavior in periodically nanostructured surfaces at the threshold of...
Resumen del póster presentado a la NanoSpain Conference, celebrada en Logroño (España) del 15 al 18 ...
Nanoparticles of high refractive index materials can possess strong magnetic polarizabilities and gi...
Active nanophotonics can be realized by controlling the optical properties of materials with externa...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
The magneto-optical activity, namely the polarization conversion capabilities of high- index, non-ab...
Periodic arrays of nanorods can present a resonant response at specific geometric conditions. We use...
Coupling magnetic materials to plasmonic structures provides a pathway to dramatically increase the ...
We study, both numerically and analytically, the effect of a substrate on the optical properties of ...
The magneto-optical activity, namely the polarization conversion capabilities of high-index, non-abs...
We study, both numerically and analytically, the effect of a substrate on the optical properties of ...
The interaction between light and ferromagnetic nanostructures is investigated in this thesis. Study...
We report unexpected enhancements of the magneto-optical effect in ferromagnetic Permalloy disks of ...
International audienceWe discuss the magneto-optical response of nanoparticles, and their potential ...
We demonstrate experimentally a strong plasmon-assisted enhancement of the transverse magneto-optica...
The optical and magneto-optical behavior in periodically nanostructured surfaces at the threshold of...
Resumen del póster presentado a la NanoSpain Conference, celebrada en Logroño (España) del 15 al 18 ...
Nanoparticles of high refractive index materials can possess strong magnetic polarizabilities and gi...
Active nanophotonics can be realized by controlling the optical properties of materials with externa...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
The magneto-optical activity, namely the polarization conversion capabilities of high- index, non-ab...
Periodic arrays of nanorods can present a resonant response at specific geometric conditions. We use...
Coupling magnetic materials to plasmonic structures provides a pathway to dramatically increase the ...
We study, both numerically and analytically, the effect of a substrate on the optical properties of ...
The magneto-optical activity, namely the polarization conversion capabilities of high-index, non-abs...
We study, both numerically and analytically, the effect of a substrate on the optical properties of ...
The interaction between light and ferromagnetic nanostructures is investigated in this thesis. Study...
We report unexpected enhancements of the magneto-optical effect in ferromagnetic Permalloy disks of ...
International audienceWe discuss the magneto-optical response of nanoparticles, and their potential ...
We demonstrate experimentally a strong plasmon-assisted enhancement of the transverse magneto-optica...
The optical and magneto-optical behavior in periodically nanostructured surfaces at the threshold of...
Resumen del póster presentado a la NanoSpain Conference, celebrada en Logroño (España) del 15 al 18 ...
Nanoparticles of high refractive index materials can possess strong magnetic polarizabilities and gi...