September 2017

Journal

Temperature dependence of ferromagnet-antiferromagnet spin alignment and coercivity in epitaxial micromagnet bilayers

By:
Lee, Michael; Wynn, Thomas; Folven, Eric; Chopdekar, Rajesh; Scholl, Andreas; Retterer, Scott T; Grepstad, Jostein; Takamura, Y
Journal Name:
Physical Review Materials
Page Number:
14402-14402
Volume:
1
Issue Number:
1
Publication Date:
September 19, 2017
View DOI Listing:
https://doi.org/10.1103/PhysRevMaterials.1.014402

Abstract

Soft x-ray photoemission electron microscopy with an in situ magnetic field has been used to study the relationship between ferromagnetic and antiferromagnetic spin alignment and the switching/reversal field of epitaxial micromagnetic structures. We investigated a model system consisting of a bilayer of ferromagnetic La0.7Sr0.3MnO3 and antiferromagnetic LaFeO3 where the spin axes in each layer can be driven from mutually perpendicular (spin-flop) to parallel alignment by varying the temperature between 30 and 300 K. Results show that not only does this spin alignment noticeably influence the bilayer micromagnet coercivity compared to La0.7Sr0.3MnO3 single-layer micromagnets, but the coercivity within this materials system can be tuned over a wide range by careful balance of material properties.


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