We present an experimental study of ultrafast optical excitation of magnetostatic surface spin wave (MSSW) packets and their spectral properties in thin films of pure iron. As the packets leave the excitation area and propagate in space, their spectra evolve non-trivially. Particularly, low or high frequency components are suppressed at the border of the excitation area depending on the orientation of the external magnetic field with respect to the magnetocrystalline anisotropy axes of the film. The effect is ascribed to the ultrafast local heating of the film. Furthermore, the time resolution of the implemented all-optical technique allows us to extract the chirp of the MSSW packet in the time domain via wavelet analysis. The chirp is a re...
Title: Investigation of spin structure and dynamics in magnetically ordered thin films Author: Tomáš...
Femtosecond laser spectroscopy of spins: Magnetization dynamics in thin magnetic films with spatio-t...
Further development of spintronics requires miniaturization and reduction of characteristic timescal...
We present an experimental study of ultrafast optical excitation of magnetostatic surface spin wave ...
International audienceWe demonstrate that femtosecond laser pulses allow triggering high-frequency s...
In this dissertation we set out to quantitatively investigate the dynamics of magnetic thin films. S...
An all-optical experiment long utilized to image phonons excited by ultrashort optical pulses has be...
The analysis of isolated spin-wave packets is crucial for the understanding of magnetic transport ph...
The current hard drives record the binary information in small magnetic domains. The recording densi...
A novel, all-optical method to excite and detect spin waves in magnetic materials is presented. By e...
Spinwaves (SWs) are a collective excitation of the local spin moments in a magnetic ordered medium. ...
Spin currents can be generated on an ultrafast time scale by excitation of a ferromagnetic (FM) thin...
Development of impulsional laser enhanced the study of the magnetization dynamic in the temporal dom...
We have observed the propagation of spin waves and spin-wave packets in 20-nm-thick Permalloy film...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Title: Investigation of spin structure and dynamics in magnetically ordered thin films Author: Tomáš...
Femtosecond laser spectroscopy of spins: Magnetization dynamics in thin magnetic films with spatio-t...
Further development of spintronics requires miniaturization and reduction of characteristic timescal...
We present an experimental study of ultrafast optical excitation of magnetostatic surface spin wave ...
International audienceWe demonstrate that femtosecond laser pulses allow triggering high-frequency s...
In this dissertation we set out to quantitatively investigate the dynamics of magnetic thin films. S...
An all-optical experiment long utilized to image phonons excited by ultrashort optical pulses has be...
The analysis of isolated spin-wave packets is crucial for the understanding of magnetic transport ph...
The current hard drives record the binary information in small magnetic domains. The recording densi...
A novel, all-optical method to excite and detect spin waves in magnetic materials is presented. By e...
Spinwaves (SWs) are a collective excitation of the local spin moments in a magnetic ordered medium. ...
Spin currents can be generated on an ultrafast time scale by excitation of a ferromagnetic (FM) thin...
Development of impulsional laser enhanced the study of the magnetization dynamic in the temporal dom...
We have observed the propagation of spin waves and spin-wave packets in 20-nm-thick Permalloy film...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Title: Investigation of spin structure and dynamics in magnetically ordered thin films Author: Tomáš...
Femtosecond laser spectroscopy of spins: Magnetization dynamics in thin magnetic films with spatio-t...
Further development of spintronics requires miniaturization and reduction of characteristic timescal...