Thin film magnetization reversal without applying external fields is an attractive perspective for applications in sensors and devices. One way to accomplish it is by fine-tuning the microstructure of a magnetic substrate via temperature control, as in the case of a thin Fe layer deposited on a MnAs/GaAs(001) template. This work reports a time-resolved resonant scattering study exploring the magnetic and structural properties of the Fe/MnAs system, using a 100 fs optical laser pulse to trigger local temperature variations and a 100 fs x-ray free-electron laser pulse to probe the induced magnetic and structural dynamics. The experiment provides direct evidence that a single optical laser pulse can reverse the Fe magnetization locally. It rev...
International audienceAbstract Single Pulse All Optical Switching represents the ability to reverse ...
International audienceThe evolution of a magnetic domain structure upon excitation by an intense, fe...
High-intensity laser irradiation can effectively couple to practically all kinds of materials, causi...
Thin film magnetization reversal without applying external fields is an attractive perspective for a...
It was shown recently that the Fe magnetization reversal in the Fe/MnAs/GaAs(001) epitaxial system, ...
It was shown recently that the Fe magnetization reversal in the Fe/MnAs/GaAs(001) epitaxial system, ...
Scattering of 130 nm radiation with 100 fs pulse length was used to monitor the \u3b1/\u3b2-striped ...
The subject of this thesis is the study of the magnetic and structural properties of MnAs/GaAs(001) ...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
This work concerns the characterization of thin MnAs layers epitaxially grown on GaAs(001) and their...
We investigated the thermal evolution of the magnetic properties of MnAs epitaxial films grown on Ga...
International audienceSpintronic devices currently rely on magnetization control by external magneti...
With the advent of free-electron lasers (FELs), new opportunities haveemerged for studying dynamics ...
i Abstract: This doctoral thesis is dedicated to the study of magnetization dynamics in ferromagneti...
The study of magnetism has long been an active area of interest for the scientific research, while a...
International audienceAbstract Single Pulse All Optical Switching represents the ability to reverse ...
International audienceThe evolution of a magnetic domain structure upon excitation by an intense, fe...
High-intensity laser irradiation can effectively couple to practically all kinds of materials, causi...
Thin film magnetization reversal without applying external fields is an attractive perspective for a...
It was shown recently that the Fe magnetization reversal in the Fe/MnAs/GaAs(001) epitaxial system, ...
It was shown recently that the Fe magnetization reversal in the Fe/MnAs/GaAs(001) epitaxial system, ...
Scattering of 130 nm radiation with 100 fs pulse length was used to monitor the \u3b1/\u3b2-striped ...
The subject of this thesis is the study of the magnetic and structural properties of MnAs/GaAs(001) ...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
This work concerns the characterization of thin MnAs layers epitaxially grown on GaAs(001) and their...
We investigated the thermal evolution of the magnetic properties of MnAs epitaxial films grown on Ga...
International audienceSpintronic devices currently rely on magnetization control by external magneti...
With the advent of free-electron lasers (FELs), new opportunities haveemerged for studying dynamics ...
i Abstract: This doctoral thesis is dedicated to the study of magnetization dynamics in ferromagneti...
The study of magnetism has long been an active area of interest for the scientific research, while a...
International audienceAbstract Single Pulse All Optical Switching represents the ability to reverse ...
International audienceThe evolution of a magnetic domain structure upon excitation by an intense, fe...
High-intensity laser irradiation can effectively couple to practically all kinds of materials, causi...