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Electronic structure of dysprosium silicide films grown on a Si(1 1 1) surface
Authors:Ayako Imai  Kenji Mawatari  Nobuo Ueno  Kazuyuki Sakamoto
Institution:a Graduate School of Science and Technology, Chiba University, Chiba 263-8522, Japan
b Department of Physics, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan
c The Institute for Solid State Physics, The University of Tokyo, Kashiwa 277-8581, Japan
d Graduate School of Advanced Integration Science, Chiba University, Yayoi-cho 1-33, Inage-ku, Chiba 263-8522, Japan
Abstract:The thickness-dependent electronic structures of Dy silicide films grown on a Si(1 1 1) surface have been investigated by angle-resolved photoelectron spectroscopy. Two (1×1) periodic bands, both of them cross the Fermi level, have been observed in the silicide films formed by Dy coverages of 1.0 monolayer and below, and more than five (View the MathML source) periodic bands have been observed in thicker films. Taking the (View the MathML source) periodic structure of Dy atoms in the submonolayer silicide film into account, the periodicity of the two metallic bands indicate that they mainly originate from the orbitals of Si atoms, which form a (1×1) structure. Of the (View the MathML source) periodic bands observed in thick films, four of them are well explained by the folding of the (1×1) bands into a (View the MathML source) periodicity. Regarding the other band, the three (View the MathML source) periodic bands would originate from the electronic states related to the inner Si layers that form a (View the MathML source) structure, and the one observed in the 3.0 ML film only might originate from the electron located at the interface between bulk Si and the Dy silicide film.
Keywords:73  20  At  79  60  _method=retrieve&  _eid=1-s2  0-S0169433209007570&  _mathId=si10  gif&  _pii=S0169433209007570&  _issn=01694332&  _acct=C000053510&  _version=1&  _userid=1524097&  md5=55c2779dbba8c91df823b4570ca060d3')" style="cursor:pointer  &minus" target="_blank">" alt="Click to view the MathML source" title="Click to view the MathML source">&minus  i  61  05  Jh
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