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Tailoring magnetism at the nanometer scale in SmCo5 amorphous films

Moubah, Reda (author)
Uppsala universitet,Materialfysik
Magnus, Fridrik (author)
Uppsala universitet,Materialfysik
Östman, Erik (author)
Uppsala universitet,Institutionen för fysik och astronomi
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Muhammad, Yousuf (author)
Uppsala universitet,Institutionen för fysik och astronomi
Arnalds, Unnar B. (author)
Uppsala universitet,Materialfysik
Ahlberg, Martina (author)
Uppsala universitet,Materialfysik
Hjörvarsson, Björgvin (author)
Uppsala universitet,Materialfysik
Andersson, Gabriella (author)
Uppsala universitet,Materialfysik
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 (creator_code:org_t)
2013-09-18
2013
English.
In: Journal of Physics. - : IOP Publishing. - 0953-8984 .- 1361-648X. ; 25:41, s. 416004-
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The thickness dependence of magnetic properties has been studied in SmCo5 amorphous films with imprinted in-plane anisotropy for thicknesses ranging down to the nanometer scale (2.5-100 nm). The field induced in-plane magnetic anisotropy decreases considerably when the film thickness is below 20 nm. Analysis of the magnetic anisotropy energy shows that the decrease of the induced in-plane anisotropy is accompanied by the development of an out-of-plane interface anisotropy. Two different regimes for the coercivity (H-c) change are found: below 3.75 nm, the H-c decreases continuously with decrease of the film thickness, whereas at above 3.75 nm, the H-c decreases with increase of the film thickness. This change in Hc can be understood by considering the decrease of the short range chemical order for the thinnest films (<3.75 nm) and the relative decrease of the interface contribution with increasing film thickness. The changes in anisotropy have a profound influence on the domain structure, in which the angle of the zigzag domain boundaries decreases with the inverse thickness of the layers.

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