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Magnetization reversal mechanism of bilayered magnetic anti-dot lattices.

Authors :
Deshpande, N. G.
Seo, M. S.
Lee, S. J.
Chen, L. Y.
Kim, K. W.
Rhee, J. Y.
Kim, Y. H.
Lee, Y. P.
Source :
Journal of Applied Physics; Jan2012, Vol. 111 Issue 1, p013906, 6p, 3 Graphs
Publication Year :
2012

Abstract

Micropatterned ordered arrays of cobalt (Co) anti-dots on a uniform thin nickel (Ni) underlayer, known as bilayered magnetic anti-dot lattices (BMALs), were fabricated using photolithography and a controlled wet-etching process. The magnetization reversals in a rhomboid BMAL under the application of a field along 0° (i.e., easy axis) and 90° (i.e., hard axis) were investigated using field-dependent magnetic-force microscopy, and the angular dependence of squareness (Mr/Ms) and coercivity (Hc) were studied using magneto-optical Kerr effects. Although the magnetic reversals were dominated by domain-wall motions or domain rotations, reflecting the easy and hard axis characteristics, various other complex reversal processes were also found that depends on the history of the field application. The angular dependence of Mr/Ms and Hc in a BMAL system was completely different from that in a single-layer, Co magnetic anti-dot lattice. Interestingly, a unidirectional and uniaxial component representing the overall magnetic anisotropy was revealed in the BMAL system. The details of these complicated magnetization behaviors were investigated and elaborated. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00218979
Volume :
111
Issue :
1
Database :
Complementary Index
Journal :
Journal of Applied Physics
Publication Type :
Academic Journal
Accession number :
70338675
Full Text :
https://doi.org/10.1063/1.3673542