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- W2079574377 abstract "Abstract Domain patterns of the upper magnetic layers of CoNbZr structures laminated with SiO2 or Al2O3 spacers were observed with a Kerr-effect microscope. In these relatively long laminated structures the width was varied in the range 20 μm ≤ w ≤ 150 μm, the spacer thickness in the range 8 nm ≤ b ≤ 100 nm and the magntic layer thickness in the range 0.35 mum ≤ D ≤ 2 μm. For the larger spacer thicknesses and/or the smaller pattern widths, an in-plane closure domain pattern similar to that of an unlaminated layer was observed, which suggests that the CoNbZr layers are magnetically uncoupled. For the other geometries, domain patterns featuring large easy-axis oriented domains were found, indicating that the CoNbZr layers are magnetically coupled through flux closure around the spacer. The transition from uncoupled to coupled magnetic layers takes place through an intermediate domain pattern incorporating enlarged easy-axis orientated domains which are only partially closed in the film plane by closure domains. The region in which this intermediate domain pattern occurs was found to coincide with the boundary between an in-plane closure domain pattern and a single easy-axis domain pattern as calculated according to Slonczewski et al. (IEEE Trans. Magn. MAG-24 (1988) 2045). Magnetic coupling between upper and lower CoNbZr layers is also shown to modify the behaviour of thin-film transformers having laminated CoNbZr cores." @default.
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- W2079574377 date "1990-09-01" @default.
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- W2079574377 title "Geometrically induced domain pattern variations in laminated CoNbZr structures" @default.
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- W2079574377 doi "https://doi.org/10.1016/0304-8853(90)90707-w" @default.
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