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- W2066036046 abstract "The magnetism of antiferromagnetic ${mathrm{Fe}}_{x}{mathrm{Pt}}_{1ensuremath{-}x}$ thin films $(x=0.27$ and 0.30) epitaxially grown onto MgO (110) and a-axis sapphire $(ensuremath{alpha}{ensuremath{-}mathrm{A}mathrm{l}}_{2}{mathrm{O}}_{3})$ substrates has been studied by elastic neutron and x-ray scattering. Bulk chemically ordered ${mathrm{FePt}}_{3}$ exhibits an antiferromagnetic spin structure with a wave vector ${Q}_{1}=2ensuremath{pi}/a(frac{1}{2}frac{1}{2}0)$ below ${T}_{N1}ensuremath{sim}160mathrm{K}.$ For slightly Fe-rich alloys $(xensuremath{gtrsim}0.26)$ a spin-reorientation transition to a second antiferromagnetic phase with a wave vector ${Q}_{2}=2ensuremath{pi}/a(frac{1}{2}00)$ occurs below ${T}_{N2}ensuremath{sim}100mathrm{K}$ at the expense of ${Q}_{1}.$ For increased Fe content $(xensuremath{sim}0.30)$ the ${Q}_{1}$ phase is strongly suppressed with a dominant ${Q}_{2}$ phase. For (111)-oriented films grown on a-axis sapphire the spin structure is the same as that found in the bulk. The $x=0.27$ film exhibits transitions at ${T}_{N1}$ and ${T}_{N2}.$ The film with $x=0.30$ exhibits an almost completely suppressed ${Q}_{1}$ phase and a dominant ${Q}_{2}$ phase with an enhanced ordering temperature of ${T}_{N2}ensuremath{sim}140mathrm{K}.$ In contrast ${mathrm{FePt}}_{3}$ (110) films grown onto MgO (110) exhibit only the ${Q}_{1}$ phase for both compositions $x=0.27$ and $x=0.30$ with the onset of the ${Q}_{2}$ phase suppressed. The distinct behavior of the films grown onto MgO from those grown onto a-axis sapphire and bulk ${mathrm{FePt}}_{3}$ may be explained by higher strain and defect densities incorporated in the films grown onto MgO." @default.
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- W2066036046 date "2001-03-14" @default.
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- W2066036046 title "Antiferromagnetic structure of<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:mrow><mml:msub><mml:mrow><mml:mi mathvariant=normal>FePt</mml:mi></mml:mrow><mml:mrow><mml:mn>3</mml:mn></mml:mrow></mml:msub></mml:mrow></mml:math>films studied by neutron scattering" @default.
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- W2066036046 doi "https://doi.org/10.1103/physrevb.63.134426" @default.
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