Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in view of potential applications in next-generation high-density magnetic recording. Laser-assisted switching provides a pathway for overcoming the material constraints of high-anisotropy and high-packing density media, though much about the dynamics of the switching process remains unexplored. We use ultrafast small-angle X-ray scattering at an X-ray free-electron laser to probe the magnetic switching dynamics of FePt nanoparticles embedded in a carbon matrix following excitation by an optical femtosecond laser pulse. We observe that the combination of laser excitation and applied static magnetic field, 1 order of magnitude smaller than the coer...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Unraveling the origin of ultrafast demagnetization in multisublattice ferromagnetic materials requir...
International audienceInvar-behavior occurring in many magnetic materials has long been of interest ...
Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in vi...
Manipulation of magnetisation with ultrashort laser pulses is promising for information storage devi...
The switching of magnetization by ultrafast lasers alone in FePt could open a technological perspect...
Magnetization manipulation is essential for basic research and applications. A fundamental question ...
The magnetic storage industry will be pushed into a new era by emerging magnetic materials and ingen...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials that equi...
Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with po...
With the advent of free-electron lasers (FELs), new opportunities haveemerged for studying dynamics ...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials1, 2, 3, 4...
Femtosecond magnetization phenomena have been challenging our understanding for over a decade. Most ...
Laser-driven non-local electron dynamics in ultrathin magnetic samples on a sub-10 nm length scale i...
This thesis deals with the impact of ultrashort near-infrared~(nIR) and extreme ultraviolet~(XUV) la...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Unraveling the origin of ultrafast demagnetization in multisublattice ferromagnetic materials requir...
International audienceInvar-behavior occurring in many magnetic materials has long been of interest ...
Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in vi...
Manipulation of magnetisation with ultrashort laser pulses is promising for information storage devi...
The switching of magnetization by ultrafast lasers alone in FePt could open a technological perspect...
Magnetization manipulation is essential for basic research and applications. A fundamental question ...
The magnetic storage industry will be pushed into a new era by emerging magnetic materials and ingen...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials that equi...
Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with po...
With the advent of free-electron lasers (FELs), new opportunities haveemerged for studying dynamics ...
Ultrafast laser techniques have revealed extraordinary spin dynamics in magnetic materials1, 2, 3, 4...
Femtosecond magnetization phenomena have been challenging our understanding for over a decade. Most ...
Laser-driven non-local electron dynamics in ultrathin magnetic samples on a sub-10 nm length scale i...
This thesis deals with the impact of ultrashort near-infrared~(nIR) and extreme ultraviolet~(XUV) la...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Unraveling the origin of ultrafast demagnetization in multisublattice ferromagnetic materials requir...
International audienceInvar-behavior occurring in many magnetic materials has long been of interest ...