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Effect of the valence state on the band magnetocrystalline anisotropy in two-dimensional rare-earth/noble-metal compounds

Physical Review Research, ISSN: 2643-1564, Vol: 4, Issue: 1
2022
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Article Description

In intermetallic compounds with zero orbital momentum (L=0) the magnetic anisotropy and the electronic band structure are interconnected. Here, we investigate this connection in divalent Eu and trivalent Gd intermetallic compounds. We find by x-ray magnetic circular dichroism an out-of-plane easy magnetization axis in two-dimensional atom-thick EuAu2. Angle-resolved photoemission spectroscopy and density-functional theory prove that this is due to strong f-d band hybridization and Eu2+ valence. In contrast, the easy in-plane magnetization of the structurally equivalent GdAu2 is ruled by spin-orbit-split d bands, notably Weyl nodal lines, occupied in the Gd3+ state. Regardless of the L value, we predict a similar itinerant electron contribution to the anisotropy of analogous compounds.

Bibliographic Details

M. Blanco-Rey; K. Ali; J. E. Ortega; F. Schiller; R. Castrillo-Bodero; L. Fernandez; P. Gargiani; F. Bertran; P. M. Sheverdyaeva

American Physical Society (APS)

Physics and Astronomy

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