Exchange bias effect in alloys and compounds
arXiv:1107.1978 · doi:10.1088/0953-8984/23/7/073201
Abstract
The phenomenology of exchange bias effects observed in structurally single-phase alloys and compounds but composed of a variety of coexisting magnetic phases such as ferromagnetic, antiferromagnetic, ferrimagnetic, spin-glass, cluster-glass and disordered magnetic states are reviewed. The investigations on exchange bias effects are discussed in diverse types of alloys and compounds where qualitative and quantitative aspects of magnetism are focused based on macroscopic experimental tools such as magnetization and magnetoresistance measurements. Here, we focus on improvement of fundamental issues of the exchange bias effects rather than on their technological importance.
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Cited by in corpus (8)
- Exchange Bias Effects in Iron Oxide-Based Nanoparticle Systems
- Antisite Disorder-induced Exchange Bias Effect in Multiferroic Y2CoMnO6
- Probing the core and shell contributions to exchange bias in Co/CoO nanoparticles of controlled size
- Exchange bias in phase-segregated Nd2/3Ca1/3MnO3 as a function of temperature and cooling magnetic fields
- Spin glass like ground state and observation of exchange bias in Mn_{0.8}Fe_{0.2}NiGe alloy
- Pressure-Induced Enhancement of the Magnetic Anisotropy in Mn(N(CN))
- Spin transfer in ultrathin BiFeO3 film under external electric field
- Large spontaneous exchange bias in a weak ferromagnet Pb6Ni9(TeO6)5