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Magnetic Self-Organized Atomic Laminate from First Principles and Thin Film Synthesis

Ingason, Arni Sigurdur (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska högskolan
Mockuté, Aurelija (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska högskolan
Dahlqvist, Martin (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska högskolan
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Magnus, Fridrik (author)
Uppsala universitet,Materialfysik,Science Institute, University of Iceland, Reykjavik, Iceland
Olafsson, S. (author)
Science Institute, University of Iceland, Reykjavik, Iceland
Arnalds, Unnar B. (author)
Uppsala universitet,Materialfysik,Department of Physics and Astronomy, Uppsala University, Uppsala, Sweden
Alling, Björn (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska högskolan
Abrikosov, Igor A. (author)
Linköpings universitet,Teoretisk Fysik,Tekniska högskolan
Hjörvarsson, Björgvin (author)
Uppsala universitet,Materialfysik,Department of Physics and Astronomy, Uppsala University, Uppsala, Sweden
Persson, Per O A (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska högskolan
Rosén, Johanna (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska högskolan
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 (creator_code:org_t)
American Physical Society, 2013
2013
English.
In: Physical Review Letters. - : American Physical Society. - 0031-9007 .- 1079-7114. ; 110
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • he first experimental realization of a magnetic Mn+1AXn (MAX) phase, (Cr0.75Mn0.25)2GeC, is presented, synthesized as a heteroepitaxial single crystal thin film, exhibiting excellent structural quality. This self-organized atomic laminate is based on the well-known Cr2GeC, with Mn, a new element in MAX phase research, substituting Cr. The compound was predicted using first-principles calculations, from which a variety of magnetic behavior is envisaged, depending on the Mn concentration and Cr/Mn atomic configuration within the sublattice. The analyzed thin films display a magnetic signal at room temperature.

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TECHNOLOGY
TEKNIKVETENSKAP

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