Magnetic phases and reorientation transitions in antiferromagnetically coupled multilayers
arXiv:cond-mat/0309621 · doi:10.1103/PhysRevB.69.184420
Abstract
In antiferromagnetically coupled superlattices grown on (001) faces of cubic substrates, e.g. based on materials combinations as Co/Cu, Fe/Si, Co/Cr, or Fe/Cr, the magnetic states evolve under competing influence of bilinear and biquadratic exchange interactions, surface-enhanced four-fold in-plane anisotropy, and specific finite-size effects. Using phenomenological (micromagnetic) theory, a comprehensive survey of the magnetic states and reorientation transitions has been carried out for multilayer systems with even number of ferromagnetic sub-layers and magnetizations in the plane. In two-layer systems (N=2) the phase diagrams in dependence on components of the applied field in the plane include ``swallow-tail'' type regions of (metastable) multistate co-existence and a number of continuous and discontinuous reorientation transitions induced by radial and transversal components of the applied field. In multilayers (N \ge 4) noncollinear states are spatially inhomogeneous with magnetization varying across the multilayer stack. For weak four-fold anisotropy the magnetic states under influence of an applied field evolve by a complex continuous reorientation into the saturated state. At higher anisotropy they transform into various inhomogeneous and asymmetric structures. The discontinuous transitions between the magnetic states in these two-layers and multilayers are characterized by broad ranges of multi-phase coexistence of the (metastable) states and give rise to specific transitional domain structures.
Manuscript 34 pages, 14 figures; submitted for publication
Cited by in corpus (7)
- Determining the phase diagram of atomically thin layered antiferromagnet CrCl
- Spin-flop transition in uniaxial antiferromagnets: magnetic phases, reorientation effects, multidomain states
- Gate-controlled Magnetotransport and Electrostatic Modulation of Magnetism in 2D magnetic semiconductor CrPS
- Reorientation in Antiferromagnetic Multilayers: Spin-Flop Transition and Surface Effects
- Equilibrium and non-equilibrium properties of synthetic metamagnetic films: A Monte Carlo study
- Instabilities of switching processes in synthetic antiferromagnets
- Surface spin-flop transition in a uniaxial antiferromagnetic Fe/Cr superlattice induced by a magnetic field of arbitrary direction