Origin of in-plane uniaxial magnetic anisotropy in CoFeB amorphous ferromagnetic thin-films
arXiv:1106.0606 · doi:10.1103/PhysRevB.83.212404
Abstract
Describing the origin of uniaxial magnetic anisotropy (UMA) is generally problematic in systems other than single crystals. We demonstrate an in-plane UMA in amorphous CoFeB films on GaAs(001) which has the expected symmetry of the interface anisotropy in ferromagnetic films on GaAs(001), but strength which is independent of, rather than in inverse proportion to, the film thickness. We show that this volume UMA is consistent with a bond-orientational anisotropy, which propagates the interface-induced UMA through the thickness of the amorphous film. It is explained how, in general, this mechanism may describe the origin of in-plane UMAs in amorphous ferromagnetic films.
4 pages, 4 figures
References in corpus (1)
Cited by in corpus (5)
- Strong coupling between magnons confined in a single magnonic cavity
- Observation of Enhanced Dynamic ΔG effect near Ferromagnetic Resonance Frequency
- Study of magnetism in MgO/FeCoB/MgO trilayers using x-ray standing wave techniques
- Tailoring magnetic properties of CoFeB films via tungsten buffer and capping layers
- Effect of lithographically-induced strain relaxation on the magnetic domain configuration in microfabricated epitaxially grown Fe81Ga19