We have studied the effect of ultrafast laser-heating on the magnetization dynamics of perpendicularly magnetized CoFeB film by means of the time-resolved magneto-optical Kerr rotation effect. The effective perpendicular magnetic anisotropy field HK is significantly decreased with enhancing the pump laser-fluence in a moderate range of 5-12 mJ cm-2. The Gilbert damping, however, is found to be independent of the pump fluence. These findings provide a new method of separately manipulating the Gilbert damping and perpendicular magnetic anisotropy
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Magnetization precession induced by linearly polarized optical excitation in ferromagnetic (Ga,Mn)As...
Using the time-resolved magneto-optical Kerr effect method, helicity-dependent all-optical magnetiza...
Laser-induced spin dynamics of in-plane magnetized CoFeB films has been studied by using time-resolv...
Time resolved magneto-optical Kerr measurements are carried out to study the precessional dynamics o...
Laser induced ultrafast demagnetization in ferromagnetic metals was discovered almost 20 years ago, ...
Magnetization damping is a key parameter to control the critical current and the switching speed in ...
Copyright © 2007 American Institute of PhysicsAn all-optical pump-probe method was used to study mag...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
Precession trajectories during excitation of magnetization dynamics play an important role in determ...
The Gilbert damping in perpendicularly magnetized Pt/Co/AlOx films is studied by means of the time-r...
CoFeB-based ultrathin films with perpendicular magnetic anisotropy are promising for different emerg...
CoFeB/MgO heterostructures are a promising candidate for an integral component of spintronic devices...
Thermally-assisted ultra-fast magnetization reversal in a DC magnetic field for magnetic multilayer ...
Ultrafast laser-induced dynamics in a ferrimagnetic gadolinium iron cobalt (Gd/FeCo) multilayer with...
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Magnetization precession induced by linearly polarized optical excitation in ferromagnetic (Ga,Mn)As...
Using the time-resolved magneto-optical Kerr effect method, helicity-dependent all-optical magnetiza...
Laser-induced spin dynamics of in-plane magnetized CoFeB films has been studied by using time-resolv...
Time resolved magneto-optical Kerr measurements are carried out to study the precessional dynamics o...
Laser induced ultrafast demagnetization in ferromagnetic metals was discovered almost 20 years ago, ...
Magnetization damping is a key parameter to control the critical current and the switching speed in ...
Copyright © 2007 American Institute of PhysicsAn all-optical pump-probe method was used to study mag...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
Precession trajectories during excitation of magnetization dynamics play an important role in determ...
The Gilbert damping in perpendicularly magnetized Pt/Co/AlOx films is studied by means of the time-r...
CoFeB-based ultrathin films with perpendicular magnetic anisotropy are promising for different emerg...
CoFeB/MgO heterostructures are a promising candidate for an integral component of spintronic devices...
Thermally-assisted ultra-fast magnetization reversal in a DC magnetic field for magnetic multilayer ...
Ultrafast laser-induced dynamics in a ferrimagnetic gadolinium iron cobalt (Gd/FeCo) multilayer with...
Ultrafast optical excitation of a metal ferromagnetic film results in a modification of the magnetoc...
Magnetization precession induced by linearly polarized optical excitation in ferromagnetic (Ga,Mn)As...
Using the time-resolved magneto-optical Kerr effect method, helicity-dependent all-optical magnetiza...