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Orbital-resolved single atom magnetism measured with X-ray absorption spectroscopy

Authors :
Singha, Aparajita
Sostina, Daria
Wolf, Christoph
Ahmed, Safa L.
Krylov, Denis
Colazzo, Luciano
Gargiani, Pierluigi
Agrestini, Stefano
Noh, Woo-Suk
Park, Jae-Hoon
Pivetta, Marina
Rusponi, Stefano
Brune, Harald
Heinrich, Andreas J.
Barla, Alessandro
Donati, Fabio
Publication Year :
2020

Abstract

Lanthanide atoms and molecules are promising candidates for atomic data storage and quantum logic due to the long magnetic lifetime of their electron quantum states. Accessing these states through electrical transport requires the engineering of their electronic configuration down to the level of individual atomic orbitals. Here, we address the magnetism of surface-supported lanthanide atoms, clusters, and films with orbital selectivity using X-ray absorption spectroscopy and magnetic circular dichroism. We exploit the selection rules of electric dipole transitions to reveal the occupation and magnetism of the valence electrons of Gd and Ho deposited on MgO/Ag(100). Comparing our results with multiplet calculations and density functional theory, we identify a charge transfer mechanism that leaves the lanthanide species in an unconventional singly ionized configuration. Our approach allows determining the role of valence electrons on the quantum level structure of lanthanide-based nanostructures.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2012.10972
Document Type :
Working Paper