| Literature DB >> 27615151 |
Michael S Lee1, Thomas A Wynn1, Erik Folven2, Rajesh V Chopdekar1, Andreas Scholl3, Anthony T Young3, Scott T Retterer4, Jostein K Grepstad2, Yayoi Takamura1.
Abstract
Engineered topological spin textures with submicron dimensions in magnetic materials have emerged in recent years as the building blocks for various spin-based memory devices. Examples of these magnetic configurations include magnetic skyrmions, vortices, and domain walls. Here, we show the ability to control and characterize the evolution of spin textures in complex oxide micromagnets as a function of temperature through the delicate balance of fundamental materials parameters, micromagnet geometries, and epitaxial strain. These results demonstrate that in order to fully describe the observed spin textures, it is necessary to account for the spatial variation of the magnetic parameters within the micromagnet. This study provides the framework to accurately characterize such structures, leading to efficient design of spin-based memory devices based on complex oxide thin films.Entities:
Keywords: X-ray photoemission electron microscopy; complex oxides; magnetic anisotropy; micromagnetics
Year: 2016 PMID: 27615151 DOI: 10.1021/acsnano.6b03770
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881