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Updated: Nov 18, 2025

Optimizing Magnetic Force Microscopy Resolution and Sensitivity to Visualize Nanoscale Magnetic Domains
Published on: July 20, 2022
Revealing noncollinear magnetic ordering at the atomic scale via XMCD
Fridtjof Kielgast1, Ivan Baev2, Torben Beeck2
1Universität Hamburg, Institut für Experimentalphysik, Luruper Chaussee 149, 22761, Hamburg, Germany. fridtjof.kielgast@desy.de.
Abstract:
Mass-selected V and Fe monomers, as well as the heterodimer [Formula: see text], were deposited on a Cu(001) surface. Their electronic and magnetic properties were investigated via X-ray absorption (XAS) and X-ray magnetic circular dichroism (XMCD) spectroscopy. Anisotropies in the magnetic moments of the deposited species could be examined by means of angle resolving XMCD, i.e. changing the X-ray angle of incidence. A weak adatom-substrate-coupling was found for both elements and, using group theoretical arguments, the ground state symmetries of the adatoms were determined. For the dimer, a switching from antiparallel to parallel orientation of the respective magnetic moments was observed. We show that this is due to the existence of a noncollinear spin-flop phase in the deposited dimers, which could be observed for the first time in such a small system. Making use of the two magnetic sublattices model, we were able to find the relative orientations for the dimer magnetic moments for different incidence angles.
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