• DocumentCode
    1330339
  • Title

    Structural Analysis of MgO/Fe Bi-Layer Films Epitaxially Grown on GaAs Single-Crystal Substrates with Different Orientations

  • Author

    Ouchi, Shigeto ; Ohtake, M. ; Matsubara, Keigo ; Futamoto, Masaaki

  • Author_Institution
    Fac. of Sci. & Eng., Chuo Univ., Tokyo, Japan
  • Volume
    47
  • Issue
    10
  • fYear
    2011
  • Firstpage
    3482
  • Lastpage
    3485
  • Abstract
    MgO/Fe bi-layer films were prepared on GaAs single-crystal substrates of (100), (110), and (111) orientations by ultra-high vacuum radio-frequency magnetron sputtering. The effects of substrate orientation and substrate temperature on the film growth process and the crystallographic properties were investigated by reflection high energy electron diffraction and X-ray diffraction. Fe single-crystal layers of (100), (110), and (111) orientations epitaxially grow on GaAs substrates of (100), (110), and (111) orientations, respectively. MgO(100) single-crystal layers are obtained on the Fe(100) layers, whereas MgO layers epitaxially grow on the Fe(110) layers with two (111) variants whose orientations are rotated around the film normal by 180° each other. On the contrary, MgO polycrystalline layers are formed on the Fe(111) layers. The out-of-plane lattice spacing of MgO(100) layer is expanded, while the in-plane spacing is shrunk with respect to the lattice constant of bulk MgO crystal due to an accommodation of lattice mismatch with the Fe(100) layer. The strain in the MgO(100) layer decreases by employing a higher substrate temperature for thin film deposition.
  • Keywords
    X-ray diffraction; crystallography; epitaxial layers; iron; lattice constants; magnesium compounds; reflection high energy electron diffraction; sputter deposition; vapour phase epitaxial growth; (100) orientation; (110) orientation; (111) orientations; GaAs; GaAs single-crystal substrates; MgO-Fe; X-ray diffraction; bilayer films; bulk crystal; crystallographic properties; epitaxial growth; lattice constant; lattice mismatch; out-of-plane lattice spacing; polycrystalline layers; reflection high energy electron diffraction; single-crystal layers; structural analysis; substrate orientation; substrate temperature; thin film deposition; ultrahigh vacuum radiofrequency magnetron sputtering; Epitaxial growth; Gallium arsenide; Iron; Lattices; Magnetic tunneling; Substrates; X-ray scattering; Epitaxial growth; GaAs substrate; MgO/Fe bi-layer film; RHEED; XRD; magnetron sputtering;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2011.2161273
  • Filename
    6027768