Laser-induced spin dynamics of in-plane magnetized CoFeB films has been studied by using time-resolved magneto-optical Kerr effect measurements. While the effective demagnetization field shows little dependence on the pump laser fluence, the intrinsic damping constant has been found to be increased from 0.008 to 0.076 with the increase in the pump fluence from 2 mJ/cm2 to 20 mJ/cm2. This sharp enhancement has been shown to be transient and ascribed to the heating effect induced by the pump laser excitation, as the damping constant is almost unchanged when the pump-probe measurements are performed at a fixed pump fluence of 5 mJ/cm2 after irradiation by high power pump pulses
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
The study of laser-induced ultrafast magnetization dynamics is crucial for the development of inform...
The work presented in this thesis mainly focus on the domain wall motion in planar Permalloy nanowir...
We have studied the effect of ultrafast laser-heating on the magnetization dynamics of perpendicular...
The emergence of thin film CoFeB has driven research and industrial applications in the past decades...
The response of a ferromagnet/antiferromagnet exchange coupled bilayer to femtosecond laser heating ...
The switching of magnetic domains induced by an ultrashort laser pulse has been demonstrated in nano...
Time resolved magneto-optical Kerr measurements are carried out to study the precessional dynamics o...
Magnetization damping is a key parameter to control the critical current and the switching speed in ...
Time-resolved pump-probe measurements of the magnetic phase change from paramagnetic to ferromagneti...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
We investigate the influence of spin currents during ultrafast laser-induced demagnetization of magn...
The response of exchange coupled ferromagnet/antiferromagnet metallic bilayers to laser excitation d...
We discuss fundamental aspects of laser-induced ultrafast demagnetization probed by the time-resolve...
In order to explore the role of enhanced spin-orbit interactions on the laser-induced ultrafast magn...
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
The study of laser-induced ultrafast magnetization dynamics is crucial for the development of inform...
The work presented in this thesis mainly focus on the domain wall motion in planar Permalloy nanowir...
We have studied the effect of ultrafast laser-heating on the magnetization dynamics of perpendicular...
The emergence of thin film CoFeB has driven research and industrial applications in the past decades...
The response of a ferromagnet/antiferromagnet exchange coupled bilayer to femtosecond laser heating ...
The switching of magnetic domains induced by an ultrashort laser pulse has been demonstrated in nano...
Time resolved magneto-optical Kerr measurements are carried out to study the precessional dynamics o...
Magnetization damping is a key parameter to control the critical current and the switching speed in ...
Time-resolved pump-probe measurements of the magnetic phase change from paramagnetic to ferromagneti...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
We investigate the influence of spin currents during ultrafast laser-induced demagnetization of magn...
The response of exchange coupled ferromagnet/antiferromagnet metallic bilayers to laser excitation d...
We discuss fundamental aspects of laser-induced ultrafast demagnetization probed by the time-resolve...
In order to explore the role of enhanced spin-orbit interactions on the laser-induced ultrafast magn...
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
The study of laser-induced ultrafast magnetization dynamics is crucial for the development of inform...
The work presented in this thesis mainly focus on the domain wall motion in planar Permalloy nanowir...