Using STM to understand diffraction oscillations for Fe growth on Cu(100)
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics
Reference19 articles.
1. Origin of Reflection High-Energy Electron-Diffraction Intensity Oscillations during Molecular-Beam Epitaxy: A Computational Modeling Approach
2. Surface evolution during molecular-beam epitaxy deposition of GaAs
3. Diffraction from stepped surfaces
4. Homoepitaxial growth of iron and a real space view of reflection-high-energy-electron diffraction
5. Growth, structure and morphology of ultrathin iron films on Cu(100)
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1. Layer relaxation and intermixing inFe∕Cu(001)studied by surface x-ray diffraction;Physical Review B;2005-01-18
2. Interaction of CO and NO with Fe thin films grown on Rh(100) surface;Surface Science;2004-05
3. Infrared Reflection Absorption Study of Carbon Monoxide Adsorbed on Submonolayer Fe-Covered Cu(100), (110), and (111) Bimetallic Surfaces;The Journal of Physical Chemistry B;2003-03-25
4. Tailoring magnetism in artificially structured materials: the new frontier;Surface Science;2002-03
5. Modification of initial growth and magnetism in Fe/Cu(100);Physical Review B;2001-12-12
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