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Incommensurate antiferromagnetism in a pure spin system via cooperative organization of local and itinerant moments

Authors :
A. Palmer
Daniel Silevitch
Bogdan Mihaila
Thomas Rosenbaum
Jiyang Wang
Peter B. Littlewood
Yejun Feng
Yang Ren
Jiaqiang Yan
Nayoon Woo
Jasper van Wezel
Jong-Woo Kim
Roland K. Schulze
Source :
Proceedings of the National Academy of Sciences. 110:3287-3292
Publication Year :
2013
Publisher :
Proceedings of the National Academy of Sciences, 2013.

Abstract

Materials with strong correlations are prone to spin and charge instabilities, driven by Coulomb, magnetic, and lattice interactions. In materials that have significant localized and itinerant spins, it is not obvious which will induce order. We combine electrical transport, X-ray magnetic diffraction, and photoemission studies with band structure calculations to characterize successive antiferromagnetic transitions in GdSi. GdSi has both sizable local moments and a partially nested Fermi surface, without confounding contributions from orbital effects. We identify a route to incommensurate order where neither type of moment dominates, but is rooted in cooperative feedback between them. The nested Fermi surface of the itinerant electrons induces strong interactions between local moments at the nesting vector, whereas the ordered local moments in turn provide the necessary coupling for a spin-density wave to form among the itinerant electrons. This mechanism echoes the cooperative interactions between electrons and ions in charge-density–wave materials, and should be germane across a spectrum of transition-metal and rare-earth intermetallic compounds.

Details

ISSN :
10916490 and 00278424
Volume :
110
Database :
OpenAIRE
Journal :
Proceedings of the National Academy of Sciences
Accession number :
edsair.doi.dedup.....5d0cb561e70b29df8f0bbe3182b8fc7f
Full Text :
https://doi.org/10.1073/pnas.1217292110