Copyright © 2004 American Institute of PhysicsWe have studied magnetic anisotropy and damping in Ni81Fe19 elements of different shape and aspect ratio by time-resolved scanning Kerr effect microscopy and micromagnetic simulations. Square elements show a fourfold anisotropy that becomes weaker with increasing aspect ratio. Square elements with aspect ratio <230 show an anisotropy of the apparent damping that becomes stronger with decreasing aspect ratio. Variations in the apparent damping may be understood in terms of dephasing of spin wave modes that leads to the appearance of fringes in time-resolved magnetic images
Coherent suppression of magnetization dynamics in circular microdots of Ni<sub>81</sub>F...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
Two series of highly ordered two-dimensional arrays of Ni81Fe19 nanoellipses were nanofabaricated wi...
We have studied magnetic anisotropy and damping in Ni<sub>81</sub>Fe<sub>19</su...
Copyright © 2003 American Institute of PhysicsWe have studied magnetization precession in a square N...
We have studied magnetization precession in a square Ni81Fe19 element, of 10 μm width, by time-resol...
Copyright © 2004 The American Physical SocietyWe have used time-resolved scanning Kerr effect micros...
We have studied magnetization precession in a square Ni<sub>81</sub>Fe<sub>19</...
We have observed a four-fold variation of the anisotropy and damping of the magnetisation precession...
Time resolved magneto-optical Kerr measurements are carried out to study the precessional dynamics o...
Copyright © 2005 American Institute of PhysicsCoherent suppression of magnetization dynamics in circ...
Copyright © 2005 American Institute of PhysicsTime resolved scanning Kerr microscopy has been used t...
Copyright © 2009 American Institute of PhysicsThe precessional dynamics of a 2×2 μm2 CoFe/NiFe (4.6 ...
The exploitation of the properties of micro-structured magnetic elements has undergone a steady incr...
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
Coherent suppression of magnetization dynamics in circular microdots of Ni<sub>81</sub>F...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
Two series of highly ordered two-dimensional arrays of Ni81Fe19 nanoellipses were nanofabaricated wi...
We have studied magnetic anisotropy and damping in Ni<sub>81</sub>Fe<sub>19</su...
Copyright © 2003 American Institute of PhysicsWe have studied magnetization precession in a square N...
We have studied magnetization precession in a square Ni81Fe19 element, of 10 μm width, by time-resol...
Copyright © 2004 The American Physical SocietyWe have used time-resolved scanning Kerr effect micros...
We have studied magnetization precession in a square Ni<sub>81</sub>Fe<sub>19</...
We have observed a four-fold variation of the anisotropy and damping of the magnetisation precession...
Time resolved magneto-optical Kerr measurements are carried out to study the precessional dynamics o...
Copyright © 2005 American Institute of PhysicsCoherent suppression of magnetization dynamics in circ...
Copyright © 2005 American Institute of PhysicsTime resolved scanning Kerr microscopy has been used t...
Copyright © 2009 American Institute of PhysicsThe precessional dynamics of a 2×2 μm2 CoFe/NiFe (4.6 ...
The exploitation of the properties of micro-structured magnetic elements has undergone a steady incr...
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
Coherent suppression of magnetization dynamics in circular microdots of Ni<sub>81</sub>F...
This thesis presents an investigation of the damping of spin waves in ferromagnetic Au(3 nm)/Ni(10 n...
Two series of highly ordered two-dimensional arrays of Ni81Fe19 nanoellipses were nanofabaricated wi...