The complete micromagnetic characterization of asymmetrically sandwiched ferromagnetic films
M. Kopte, U. K. R\"o{\ss}ler, R. Sch\"afer, T. Kosub, A., K\'akay, O. Volkov, H. Fuchs, E. Y. Vedmedenko, F. Radu, O. G., Schmidt, J. Lindner, J. Fa{\ss}bender, D. Makarov

TL;DR
This paper presents a comprehensive experimental method to determine all micromagnetic parameters, including Dzyaloshinskii-Moriya interactions, in asymmetric ferromagnetic thin films, crucial for understanding and designing spintronic devices.
Contribution
It introduces a novel approach combining Kerr microscopy and magnetometry to fully characterize micromagnetic parameters in ultrathin films, especially DMI.
Findings
Quantified micromagnetic parameters for CrOx/Co/Pt stacks.
Identified circular magnetic objects as homochiral bubble domains.
Predicted chiral skyrmions with diameters 40-200nm, below optical resolution.
Abstract
The magnetic properties of ferromagnetic thin films down to the nanoscale are ruled by the exchange stiffness, anisotropies and the effects of magnetic fields. As surfaces break inversion symmetry, an additional effective chiral exchange is omnipresent in any magnetic nanostructure. These so-called Dzyaloshinskii-Moriya interactions (DMI) affect all inhomogeneous magnetic states either subtly or spectacularly. E.g., DMIs cause a chirality selection of the rotation sense and can fix the local rotation axis for the magnetization in domain walls (DW). But, they can stabilize also entirely different twisted magnetic structures. The chiral skyrmions a two-dimensional particle-like topological soliton is the ultimately smallest of these objects, which currently is targetted as a possible information carrier in novel spintronic devices. Observation and quantification of the chiral exchange…
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Taxonomy
TopicsMagnetic Properties and Applications · Magnetic properties of thin films · Characterization and Applications of Magnetic Nanoparticles
