A systematic experimental study of Gilbert damping is performed via ferromagnetic resonance for the disordered crystalline binary 3d transition-metal alloys Ni-Co, Ni-Fe, and Co-Fe over the full range of alloy compositions. After accounting for inhomogeneous linewidth broadening, the damping shows clear evidence of both interfacial damping enhancement (by spin pumping) and radiative damping. We quantify these two extrinsic contributions and thereby determine the intrinsic damping. The comparison of the intrinsic damping to multiple theoretical calculations yields good qualitative and quantitative agreement in most cases. Furthermore, the values of the damping obtained in this study are in good agreement with a wide range of published experi...
The structure and static magnetic properties-saturation magnetization, perpendicular anisotropy, spe...
The relationship between proximity induced magnetism (PIM) at the heavy metal/ferromagnet interface...
This work presents new theoretical developments of atomistic spin simulations of magnetic materials ...
A systematic experimental study of Gilbert damping is performed via ferromagnetic resonance for the ...
This work investigates the magnetic properties saturation magnetization, spectroscopic g-factor, eff...
Relaxation effects are of primary importance in the description of magnetic excitations, leading to ...
We study the influence of non-local damping on magnon properties of Fe, Co, Ni and Fe$_{1-x}$Co$_{x}...
Using a formulation of first-principles scattering theory that includes disorder and spin-orbit coup...
The evolution of damping in Co/Pt, Co/Au, and Ni81Fe19/Pt bilayers was studied with increasing nonma...
The relationship between proximity-induced magnetism (PIM) at the heavy metal/ferromagnet interface ...
We report experiments on the control of intrinsic magnetic damping by thermal torque effects produce...
The structure and static magnetic properties-saturation magnetization, perpendicular anisotropy, spe...
The relationship between proximity induced magnetism (PIM) at the heavy metal/ferromagnet interface...
This work presents new theoretical developments of atomistic spin simulations of magnetic materials ...
A systematic experimental study of Gilbert damping is performed via ferromagnetic resonance for the ...
This work investigates the magnetic properties saturation magnetization, spectroscopic g-factor, eff...
Relaxation effects are of primary importance in the description of magnetic excitations, leading to ...
We study the influence of non-local damping on magnon properties of Fe, Co, Ni and Fe$_{1-x}$Co$_{x}...
Using a formulation of first-principles scattering theory that includes disorder and spin-orbit coup...
The evolution of damping in Co/Pt, Co/Au, and Ni81Fe19/Pt bilayers was studied with increasing nonma...
The relationship between proximity-induced magnetism (PIM) at the heavy metal/ferromagnet interface ...
We report experiments on the control of intrinsic magnetic damping by thermal torque effects produce...
The structure and static magnetic properties-saturation magnetization, perpendicular anisotropy, spe...
The relationship between proximity induced magnetism (PIM) at the heavy metal/ferromagnet interface...
This work presents new theoretical developments of atomistic spin simulations of magnetic materials ...