MnF2/CaF2/Si(111) triple layer was grown and studied by RHEED, AFM, X-ray reflectivity and absorption at Mn 2p, Ca 2p, Si 2p, F 1s edges. It was observed that the CaF2 lattice orientation on Si(111) drives the growth mode of MnF2. In particular experimental results indicate that at the first deposition stages, up to 3 monolayers, the MnF2 film keeps the cubic lattice structure of the CaF2 buffer. This changes to -PbO2 type structure at higher coverage. The fact that MnF2 inherits the lattice structure of CaF2 could explain the x-ray absorption line shape at F 1s edge. On the other hand, Mn 2p absorption edges do not show at the low coverage investigated here the features characteristic of bulk MnF2 and due to crystal field splitting.

X-Ray absorption and reflectivity studies of MnF2 initial growth on CaF2/Si(111)

L Pasquali;F Borgatti;B Doyle;A Giglia;N Mahne;M Pedio;S Nannarone
2004

Abstract

MnF2/CaF2/Si(111) triple layer was grown and studied by RHEED, AFM, X-ray reflectivity and absorption at Mn 2p, Ca 2p, Si 2p, F 1s edges. It was observed that the CaF2 lattice orientation on Si(111) drives the growth mode of MnF2. In particular experimental results indicate that at the first deposition stages, up to 3 monolayers, the MnF2 film keeps the cubic lattice structure of the CaF2 buffer. This changes to -PbO2 type structure at higher coverage. The fact that MnF2 inherits the lattice structure of CaF2 could explain the x-ray absorption line shape at F 1s edge. On the other hand, Mn 2p absorption edges do not show at the low coverage investigated here the features characteristic of bulk MnF2 and due to crystal field splitting.
2004
INFM
Istituto Officina dei Materiali - IOM -
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/208790
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