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Structural characterisation of Fe layers on Co(11(2)over-bar0)

Academic Article
Publication Date:
2000
abstract:
The structure of thin Fe overlayers on the Co(11 (2) over bar0) surface has been investigated by low energy electron diffraction (LEED) and by primary-beam diffraction modulated electron emission (PDMEE). Films were prepared by slow Fe deposition at room temperature, up to a nominal coverage of 14 ML. The structure of the layers was the tetragonally distorted bet modification of the equilibrium bcc phase, with the (001)Fe\(11 (2) over bar0)Co and [1 (1) over bar0]Fe\[1 (1) over bar 00]Co relationships with the Co substrate. In the low coverage range (0-2 ML) iron forms 3 ML thick islands, that by further Fe deposition increase in thickness and finally coalesce at a coverage as large as 5 ML. The occurrence of a highly distorted bet phase is detected at a nominal coverage of about 2 ML. The final, 14 ML thick film exhibits a 3% contraction along the growth axis with respect to the equilibrium phase. The Fe(001)-Co(11 (2) over bar0) system is a rarely encountered example in which the substrate and overlayer unit meshes exhibit a very large misfit asymmetry in the interface plane. As a consequence, a breakdown of the long-range order occurs in the Fe film along the [1 (1) over bar 00] substrate direction. (C) 2000 Elsevier Science B.V. All rights reserved.
Iris type:
01.01 Articolo in rivista
Keywords:
Auger electron spectroscopy; cobalt; electron-solid diffraction; epitaxy; growth; iron; metallic films; ENERGY-ELECTRON-DIFFRACTION; ULTRATHIN IRON FILMS; EPITAXIAL-GROWTH; PHOTOELECTRON DIFFRACTION; CRYSTALLINE-STRUCTURE; THIN-FILMS; FCC; CO; EMISSION; BCC
List of contributors:
DI BONA, Alessandro
Authors of the University:
DI BONA ALESSANDRO
Handle:
https://iris.cnr.it/handle/20.500.14243/239384
Published in:
SURFACE SCIENCE
Journal
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