Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with potential for applications in spintronics. In this work, we address the role of the scattering cross section, thermal effects, and laser fluence on the magnetic, structural, and chemical stability of individual magnetic nanoparticles excited by single femtosecond laser pulses. We find that the energy transfer from the fs laser pulse to the nanoparticles is limited by the Rayleigh scattering cross section, which in combination with the light absorption of the supporting substrate and protective layers determines the increase in the nanoparticle temperature. We investigate individual Co nanoparticles (8 to 20 nm in size) as a prototypical model s...
This thesis deals with the impact of ultrashort near-infrared~(nIR) and extreme ultraviolet~(XUV) la...
International audienceFemtosecond magnetization phenomena have been challenging our understanding fo...
In this work, we investigate single-shot all-optical switching (AOS) in Tb/Co/Gd/Co/Tb multilayers i...
Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with po...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...
The switching of magnetic domains induced by an ultrashort laser pulse has been demonstrated in nano...
Manipulation of magnetisation with ultrashort laser pulses is promising for information storage devi...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials1, 2, 3, 4...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
he magnetic domain of cobalt (Co) nanoparticles (NPs) was studied as a function of particle size. Va...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
In this work, we report on modelling results obtained with our recently developed simulation tool en...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
We present a detailed study on the morphology and magnetic properties of Co nanostructures deposited...
This thesis deals with the impact of ultrashort near-infrared~(nIR) and extreme ultraviolet~(XUV) la...
International audienceFemtosecond magnetization phenomena have been challenging our understanding fo...
In this work, we investigate single-shot all-optical switching (AOS) in Tb/Co/Gd/Co/Tb multilayers i...
Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with po...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...
The switching of magnetic domains induced by an ultrashort laser pulse has been demonstrated in nano...
Manipulation of magnetisation with ultrashort laser pulses is promising for information storage devi...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials1, 2, 3, 4...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
he magnetic domain of cobalt (Co) nanoparticles (NPs) was studied as a function of particle size. Va...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
In this work, we report on modelling results obtained with our recently developed simulation tool en...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
We present a detailed study on the morphology and magnetic properties of Co nanostructures deposited...
This thesis deals with the impact of ultrashort near-infrared~(nIR) and extreme ultraviolet~(XUV) la...
International audienceFemtosecond magnetization phenomena have been challenging our understanding fo...
In this work, we investigate single-shot all-optical switching (AOS) in Tb/Co/Gd/Co/Tb multilayers i...