Growth of ferromagnetic MnAs1-xSbx films and MnSb/MnAs/MnAs1-xSbx multilayers on GaAs (0 0 1) by molecular beam epitaxy

We investigated ternary MnAs1-xSbx thin films on GaAs (0 0 1) substrates by low-temperature molecular beam epitaxy under varying growth conditions, studying their crystal structures and magnetic properties. It was found that MnAs1-xSbx film with x=0.2 seems to be lattice-matched to GaAs (0 0 1) subs...

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Veröffentlicht in:Journal of crystal growth 2004-07, Vol.268 (1-2), p.96-102
Hauptverfasser: UCHITOMI, N, NAKAYAMA, Y, YAMAZAKI, M, JINBO, Y
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container_issue 1-2
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container_title Journal of crystal growth
container_volume 268
creator UCHITOMI, N
NAKAYAMA, Y
YAMAZAKI, M
JINBO, Y
description We investigated ternary MnAs1-xSbx thin films on GaAs (0 0 1) substrates by low-temperature molecular beam epitaxy under varying growth conditions, studying their crystal structures and magnetic properties. It was found that MnAs1-xSbx film with x=0.2 seems to be lattice-matched to GaAs (0 0 1) substrates and is suitable for the growth of magnetic multilayers. We explored the possibility of growing magnetic MnSb/MnAs/MnAs1-xSbx multilayers on GaAs (0 0 1), and successfully prepared this kind of magnetic multilayer. We also report herein preliminary results regarding the magnetotransport properties of MnAs1-xSbx films in relation to the Sb content.
doi_str_mv 10.1016/j.jcrysgro.2004.04.114
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subjects Condensed matter: electronic structure, electrical, magnetic, and optical properties
Cross-disciplinary physics: materials science
rheology
Domain effects, magnetization curves, and hysteresis
Exact sciences and technology
Magnetic properties and materials
Magnetization curves, hysteresis, Barkhausen and related effects
Magnetization curves, magnetization reversal, hysteresis, barkhausen and related effects
Materials science
Methods of deposition of films and coatings
film growth and epitaxy
Molecular, atomic, ion, and chemical beam epitaxy
Physics
title Growth of ferromagnetic MnAs1-xSbx films and MnSb/MnAs/MnAs1-xSbx multilayers on GaAs (0 0 1) by molecular beam epitaxy
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