Giant perpendicular exchange bias with antiferromagnetic MnN
arXiv:1702.07538 · doi:10.1063/1.4983089
Abstract
We investigated an out-of-plane exchange bias system that is based on the antiferromagnet MnN. Polycrystalline, highly textured film stacks of Ta / MnN / CoFeB / MgO / Ta were grown on SiO by (reactive) magnetron sputtering and studied by x-ray diffraction and Kerr magnetometry. Nontrivial modifications of the exchange bias and the perpendicular magnetic anisotropy were observed both as functions of film thicknesses as well as field cooling temperatures. In optimized film stacks, a giant perpendicular exchange bias of 3600 Oe and a coercive field of 350 Oe were observed at room temperature. The effective interfacial exchange energy is estimated to be mJ/m and the effective uniaxial anisotropy constant of the antiferromagnet is kJ/m. The maximum effective perpendicular anisotropy field of the CoFeB layer is Oe. These values are larger than any previously reported values. These results possibly open a route to magnetically stable, exchange biased perpendicularly magnetized spin valves.
4 pages, 5 figures
Cited by in corpus (5)
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