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The nature of ferromagnetism in the chiral helimagnet Cr1/3NbS2

Academic Article
Publication Date:
2020
abstract:
The chiral helimagnet Cr1/3NbS2 hosts exotic spin textures, whose influence on the magneto-transport properties make this material an ideal candidate for future spintronic applications. To date, the interplay between macroscopic magnetic and transport degrees of freedom is believed to result from a reduction in carrier scattering following spin order. Here, we present electronic structure measurements across the helimagnetic transition temperature T-C that challenges this view. We show that the Fermi surface is comprised of strongly hybridized Nb- and Cr-derived electronic states, and that spectral weight close to the Fermi level increases anomalously as the temperature is lowered below T-C. These findings are rationalized on the basis of first principle density functional theory calculations, which reveal a large nearest-neighbor exchange energy, suggesting the interaction between local spin moments and hybridized Nb- and Cr-derived itinerant states to go beyond the perturbative interaction of Ruderman-Kittel-Kasuya-Yosida, suggesting instead a mechanism rooted in a Hund's exchange interaction.
Iris type:
01.01 Articolo in rivista
Keywords:
chiral magnet; ferromagnetism; photoemission
List of contributors:
Pis, Igor; Nappini, Silvia; Vobornik, Ivana; Bondino, Federica; Fujii, Jun
Authors of the University:
BONDINO FEDERICA
FUJII JUN
NAPPINI SILVIA
VOBORNIK IVANA
Handle:
https://iris.cnr.it/handle/20.500.14243/409728
Published in:
COMMUNICATIONS PHYSICS
Journal
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