International audienceWe report an alternative mechanism for the physical origin of the temperature-dependent ferromagnetic relaxation of Permalloy (NiFe) thin films. Through spin-pumping experiments, we demonstrate that the peak in the temperature-dependence of NiFe damping can be understood in terms of enhanced spin angular momentum absorption at the magnetic phase transition in antiferromagnetic surface-oxidized layers. These results suggest new avenues for the investigation of an incompletely-understood phenomenon in physics
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
International audienceWe report an alternative mechanism for the physical origin of the temperature-...
International audienceWe report an alternative mechanism for the physical origin of the temperature-...
International audienceWe report an alternative mechanism for the physical origin of the temperature-...
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Investigating the damping processes and the behavior of dynamic magnetic properties in ferromagnetic...
International audienceWe report measurement of a spin pumping effect due to fluctuations of the magn...
International audienceWe report measurement of a spin pumping effect due to fluctuations of the magn...
International audienceWe report measurement of a spin pumping effect due to fluctuations of the magn...
The temperature dependencies of the ferromagnetic resonance (FMR) linewidth and the resonance field-...
The spin relaxation from continuous iron film, to lithographically patterned submicron Permalloy dis...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
International audienceWe report an alternative mechanism for the physical origin of the temperature-...
International audienceWe report an alternative mechanism for the physical origin of the temperature-...
International audienceWe report an alternative mechanism for the physical origin of the temperature-...
Copyright © 2001 American Institute of PhysicsThe rise and damping of spin excitations in three Ni81...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Investigating the damping processes and the behavior of dynamic magnetic properties in ferromagnetic...
International audienceWe report measurement of a spin pumping effect due to fluctuations of the magn...
International audienceWe report measurement of a spin pumping effect due to fluctuations of the magn...
International audienceWe report measurement of a spin pumping effect due to fluctuations of the magn...
The temperature dependencies of the ferromagnetic resonance (FMR) linewidth and the resonance field-...
The spin relaxation from continuous iron film, to lithographically patterned submicron Permalloy dis...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...
Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ...