Topological magnetic dipoles and emergent field bundles in a ferromagnetic microstructure by X-ray magnetic vector tomography
Javier Hermosa, Aurelio Hierro-Rodriguez, Carlos Quir\'os, Jos\'e I., Martin, Andrea Sorrentino, Lucia Aballe, Eva Pereiro, Maria V\'elez and, Salvador Ferrer

TL;DR
This study uses X-ray vector magnetic tomography to map 3D magnetization in a permalloy microstructure, revealing complex topological features and emergent field bundles that enhance understanding of 3D magnetic topologies.
Contribution
It provides a detailed experimental analysis of 3D topological magnetic structures and emergent fields in a non-ideal microstructure, advancing the understanding of topological constraints in magnetic systems.
Findings
Observation of a complex 3D asymmetric domain wall with Bloch points.
Emergent field lines form bundles connecting Bloch points or reaching the surface.
Shape effects modify the ideal monopole emergent field, leading to diverse textures.
Abstract
Advanced vector imaging techniques provide us with 3D maps of magnetization fields in which topological concepts can be directly applied to describe real-space experimental textures in non-ideal geometries. Here, the 3D magnetization of a low symmetry permalloy microstructure is obtained by X-ray vector magnetic tomography and analysed in detail in terms of topological charges and emergent fields. A central asymmetric domain wall with a complex 3D structure is observed in which magnetization chirality transitions are mediated by Bloch points arranged in several dipoles and a triplet. The ideal spherical symmetry of the emergent field of an isolated monopole is severely modified due to shape effects of the permalloy microstructure. Emergent field lines aggregate into bundles that either connect adjacent Bloch points within a topological dipole or tend towards the surface. These bundles…
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Taxonomy
TopicsMagnetic properties of thin films · Geomagnetism and Paleomagnetism Studies · Geophysical and Geoelectrical Methods
