Manipulation of magnetisation with ultrashort laser pulses is promising for information storage device applications. The dynamics of the magnetisation response depends on the energy transfer from the photons to the spins during the initial laser excitation. A material of special interest for magnetic storage are FePt nanoparticles, for which switching of the magnetisation with optical angular momentum was demonstrated recently. The mechanism remained unclear. Here we investigate experimentally and theoretically the all-optical switching of FePt nanoparticles. We show that the magnetisation switching is a stochastic process. We develop a complete multiscale model which allows us to optimize the number of laser shots needed to switch the magn...
Using the time-resolved magneto-optical Kerr effect method, helicity-dependent all-optical magnetiza...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
Magnetization manipulation is essential for basic research and applications. A fundamental question ...
Manipulation of magnetisation with ultrashort laser pulses is promising for information storage devi...
Magnetic recording using circularly polarised femto-second laser pulses is an emerging technology th...
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...
Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in vi...
Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in vi...
The switching of magnetization by ultrafast lasers alone in FePt could open a technological perspect...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...
The microscopic mechanism behind the all optical switching (AOS) in ferromagnets has triggered inten...
The magnetic storage industry will be pushed into a new era by emerging magnetic materials and ingen...
Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with po...
The thesis deals with experimental studies of the laser induced spin dynamics in magnetic nanostruct...
Using the time-resolved magneto-optical Kerr effect method, helicity-dependent all-optical magnetiza...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
Magnetization manipulation is essential for basic research and applications. A fundamental question ...
Manipulation of magnetisation with ultrashort laser pulses is promising for information storage devi...
Magnetic recording using circularly polarised femto-second laser pulses is an emerging technology th...
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...
Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in vi...
Light-matter interaction at the nanoscale in magnetic materials is a topic of intense research in vi...
The switching of magnetization by ultrafast lasers alone in FePt could open a technological perspect...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...
The microscopic mechanism behind the all optical switching (AOS) in ferromagnets has triggered inten...
The magnetic storage industry will be pushed into a new era by emerging magnetic materials and ingen...
Laser-induced manipulation of magnetism at the nanoscale is a rapidly growing research topic with po...
The thesis deals with experimental studies of the laser induced spin dynamics in magnetic nanostruct...
Using the time-resolved magneto-optical Kerr effect method, helicity-dependent all-optical magnetiza...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
Magnetization manipulation is essential for basic research and applications. A fundamental question ...