Ag-induced spin-reorientation transition of ultrathin Fe films on Pt(111)
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2956678
Reference19 articles.
1. Quantitative evaluation of magnetocrystalline anisotropy of columnar grains and thickness of initial layer in CoCr-based perpendicular media
2. Perpendicular recording media for hard disk drives
3. Influence of substrate roughness on spin reorientation transition of ultrathin Co films on Pd(111)
4. Ag-induced spin-reorientation transition of Co ultrathin films on Pt(111)
5. Spin Reorientation and Structural Relaxation of Atomic Layers: Pushing the Limits of Accuracy
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1. Strain driven phase transition and mechanism for Fe/Ir(111) films;Scientific Reports;2021-11-09
2. Enhancing the magnetic anisotropy energy by tuning the contact areas of Ag and Ni at the Ag/Ni interface;Physical Chemistry Chemical Physics;2018
3. Electric field modifications on the coercive force for electrochemical etched Co/Pt(111) films;Surface and Coatings Technology;2016-10
4. Layered structure and related magnetic properties for annealed Fe/Ir(111) ultrathin films;Journal of Applied Physics;2015-05-07
5. Ag-related alloy formation and magnetic phases for Ag/Co/Ir(111) ultrathin films;Thin Solid Films;2013-12
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