Magnetisation reversal in anisotropy graded Co/Pd multilayers
Author(s) -
Craig Barton,
Thomas Thomson
Publication year - 2015
Publication title -
journal of applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.699
H-Index - 319
eISSN - 1089-7550
pISSN - 0021-8979
DOI - 10.1063/1.4927726
Subject(s) - anisotropy , condensed matter physics , bilayer , materials science , magnetization , magnetic anisotropy , sputtering , coercivity , nucleation , thin film , nanotechnology , optics , magnetic field , chemistry , physics , thermodynamics , biochemistry , quantum mechanics , membrane
We demonstrate high precision controllability of the magnetization reversal nucleation process in [Co/Pd]8 multilayer films consisting of two sets of bilayers with high and low perpendicular anisotropy, respectively. The anisotropy of the entire film is set by the degree of Co/Pd interfacial mixing during deposition which provides fine control of the anisotropy of an individual bilayer in the multilayer stack. The relative number of each type of bilayer is used to select the magnetisation reversal behavior such that changing one bilayer changes the properties of the entire multilayer through anisotropy averaging. A simple extension to the sputtering protocol would provide multilayer films with fully graded anisotropy, while maintaining a constant saturation magnetization opening new possibilities for the creation of highly engineered multilayer structures for spin torque devices and future magnetic recording media.
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