Uniform structural phase transition in V2O3 without short-range distortions of the local structure

The local structure of V2O3, an archetypal strongly correlated electron system that displays a metal-insulator transition around 160 K, has been investigated via pair distribution function (PDF) analysis of neutron and x-ray total scattering data. The rhombohedral-to-monoclinic structural phase tran...

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Veröffentlicht in:Physical review. B 2021-11, Vol.104 (18)
Hauptverfasser: Fletcher, Ethan R. A., Higashi, Kentaro, Kalcheim, Yoav, Kageyama, Hiroshi, Frandsen, Benjamin A.
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Sprache:eng
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Zusammenfassung:The local structure of V2O3, an archetypal strongly correlated electron system that displays a metal-insulator transition around 160 K, has been investigated via pair distribution function (PDF) analysis of neutron and x-ray total scattering data. The rhombohedral-to-monoclinic structural phase transition manifests as an abrupt change on all length scales in the observed PDF. No monoclinic distortions of the local structure are found above the transition, although coexisting regions of phase-separated rhombohedral and monoclinic symmetry are observed between 150 K and 160 K. Furthermore this lack of structural fluctuations above the transition contrasts with the known presence of magnetic fluctuations in the high-temperature state, suggesting that the lattice degree of freedom plays a secondary role behind the spin degree of freedom in the transition mechanism.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.104.184115