Competition Between Anti-Phase Boundaries and Charge-Orbital Ordering in Epitaxial Stepped Fe3O4(100) Thin Films

Author:

Wu Han-Chun1,Liu Xiao1,Coileáin Cormac Ó.1,Xu Hongjun1,Abid Mourad1,Abid Mohamed1,Syrlybekov Askar2,Mauit Ozhet2,Shvets Igor V.2,Sofin R. G. S.3,Cho Jiung4,Chun Byong Sun5,Liu Huajun6

Affiliation:

1. School of Physics, Beijing Institute of Technology, Beijing 100081, P. R. China

2. School of Physics and CRANN, Trinity College, University of Dublin, Dublin 2, Ireland

3. Department of Physics, Sultan Qaboos University, Muscat 123, Oman

4. Western Seoul Center, Korea Basic Science Institute, Seoul 03579, Republic of Korea

5. Division of Industrial Metrology, Korea Research Institute of Standards and Science, Daejeon 305-340, Republic of Korea

6. Institute of Plasma Physics, Chinese Academy of Sciences, Hefei 230031, P. R. China

Abstract

Magnetite is a highly utilized transition metal oxide with many interesting magnetic and transport properties. The presence of anti-phase boundaries (APBs) and charge-orbital ordering (COO) are two of the most exciting properties of epitaxial magnetite thin films. Here, epitaxial stepped Fe3O4 films were prepared to investigate the competition between APBs and COO via measurements of in-plane anisotropy. The anisotropy was probed for two orthogonal configurations, with magnetic field applied or electrical-contacts aligned either along or perpendicular to the steps. We reveal that the APBs dominate the magnetic and transport properties of the films above the Verwey transition temperature ([Formula: see text]. However, below [Formula: see text] film thickness becomes a decisive factor in determining the magnetic nature of stepped magnetite films, due to its correlation with domain size. When the film is thinner than a critical thickness, the anisotropy is dominated by the APBs, and a higher anisotropy constant and MR ratio are observed when the magnetic field or contacts are oriented along the steps. Conversely, for sufficiently thick films, below [Formula: see text], the magnetic and electrical transport properties are dominated by COO. Thus a higher anisotropy constant and MR ratio are observed when the magnetic field or contacts are oriented perpendicular to the steps.

Publisher

World Scientific Pub Co Pte Lt

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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