Copyright © 2004 The American Physical SocietyWe have used time-resolved scanning Kerr effect microscopy to study dephasing of spin wave modes in a square Ni81Fe19 element of 10 μm width and 150 nm thickness. When a static magnetic field H was applied parallel to an edge of the square, demagnetized regions appeared at the edges orthogonal to the field. When H was applied along a diagonal, a demagnetized region appeared along the opposite diagonal. Time-resolved images of the out-of-plane magnetization component showed stripes that lie perpendicular to H and indicate the presence of spin wave modes with wave vector parallel to the static magnetization. The transient Kerr rotation was measured at different positions along an axis parallel to ...
Copyright © 2008 IEEE. Personal use of this material is permitted. Permission from IEEE must be obta...
Large angle picosecond reorientation of the magnetization has been studied in circular Ni81Fe19 thin...
Coherent suppression of magnetization dynamics in circular microdots of Ni<sub>81</sub>F...
Copyright © 2004 American Institute of PhysicsWe have studied magnetic anisotropy and damping in Ni8...
Copyright © 2003 American Institute of PhysicsWe have studied magnetization precession in a square N...
Copyright © 2008 The American Physical SocietyWe have used time-resolved scanning Kerr microscopy to...
Copyright © 2006 American Institute of PhysicsMicromagnetic simulations have been performed to inves...
Copyright © 2009 American Institute of PhysicsThe precessional dynamics of a 2×2 μm2 CoFe/NiFe (4.6 ...
Copyright © 2008 The American Physical SocietyTime-resolved scanning Kerr microscopy measurements ha...
We have studied magnetization precession in a square Ni81Fe19 element, of 10 μm width, by time-resol...
Within the framework of this thesis, different spin wave propagation experiments have been performed...
We have used a magneto-optical pump-probe technique to stimulate and characterize small amplitude pr...
We have studied magnetization precession in a square Ni<sub>81</sub>Fe<sub>19</...
In this thesis, wave effects associated with the refraction and reflection of plane, dipolar spin wa...
Copyright © 2005 American Institute of PhysicsTime resolved scanning Kerr microscopy has been used t...
Copyright © 2008 IEEE. Personal use of this material is permitted. Permission from IEEE must be obta...
Large angle picosecond reorientation of the magnetization has been studied in circular Ni81Fe19 thin...
Coherent suppression of magnetization dynamics in circular microdots of Ni<sub>81</sub>F...
Copyright © 2004 American Institute of PhysicsWe have studied magnetic anisotropy and damping in Ni8...
Copyright © 2003 American Institute of PhysicsWe have studied magnetization precession in a square N...
Copyright © 2008 The American Physical SocietyWe have used time-resolved scanning Kerr microscopy to...
Copyright © 2006 American Institute of PhysicsMicromagnetic simulations have been performed to inves...
Copyright © 2009 American Institute of PhysicsThe precessional dynamics of a 2×2 μm2 CoFe/NiFe (4.6 ...
Copyright © 2008 The American Physical SocietyTime-resolved scanning Kerr microscopy measurements ha...
We have studied magnetization precession in a square Ni81Fe19 element, of 10 μm width, by time-resol...
Within the framework of this thesis, different spin wave propagation experiments have been performed...
We have used a magneto-optical pump-probe technique to stimulate and characterize small amplitude pr...
We have studied magnetization precession in a square Ni<sub>81</sub>Fe<sub>19</...
In this thesis, wave effects associated with the refraction and reflection of plane, dipolar spin wa...
Copyright © 2005 American Institute of PhysicsTime resolved scanning Kerr microscopy has been used t...
Copyright © 2008 IEEE. Personal use of this material is permitted. Permission from IEEE must be obta...
Large angle picosecond reorientation of the magnetization has been studied in circular Ni81Fe19 thin...
Coherent suppression of magnetization dynamics in circular microdots of Ni<sub>81</sub>F...