Magnetotransport properties in epitaxial Fe3O4(001) thin films with current perpendicular to the plane geometry
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.4795842
Reference17 articles.
1. Band Structure in the High Temperature Phase of Fe3O4
2. A sensitive enzymeless hydrogen-peroxide sensor based on epitaxially-grown Fe3O4 thin film
3. Ferroelectric Switching in Multiferroic Magnetite (Fe3O4) Thin Films
4. Magnetic property characterization of magnetite (Fe3O4) nanorod cores for integrated solenoid rf inductors
5. The Verwey transition—a new perspective
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1. Fabrication and leakage current and ferroelectric characteristics of multiferroic Fe3O4/(Bi3.25Nd0.65Eu0.10)Ti3O12composite thin films with Fe3O4magnetic electrodes micropatterned by reactive ion etching;Japanese Journal of Applied Physics;2017-09-07
2. Electronic band structure of TiN/MgO nanostructures;Japanese Journal of Applied Physics;2017-03-07
3. Magnetic and structural characteristics of multiferroic Fe3O4/(Bi3.25Nd0.65Eu0.10)Ti3O12composite thin films deposited by metalorganic chemical vapor deposition;Japanese Journal of Applied Physics;2016-08-24
4. Antiferromagnetic coupling and impurity effects at junctions betweenFe3O4and Fe(001) layers;Physical Review B;2015-05-20
5. First-Principles Study of TiN/MgO Interfaces;e-Journal of Surface Science and Nanotechnology;2014
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