Disentangling pre-transitional fluctuations in metallic VO2
Javier del Valle, Carl Willem Rischau, Artem Korshunov, David Ambrosi, Aitana Tarazaga Martin-Luengo, Ibraheem Yousef, Sara A. Lopez-Paz, Shany Neyshtadt-Ronel, Stefano Gariglio, Alexei Bosak, Yoav Kalcheim

TL;DR
This study investigates the nature of fluctuations in VO2 during its metal-insulator transition, providing evidence that structural instability likely triggers the transition rather than purely electronic effects.
Contribution
The paper combines multiple measurement techniques to analyze pre-transitional fluctuations in VO2, offering a novel approach to distinguish between structural and electronic transition mechanisms.
Findings
Strong electronic and structural fluctuations observed in metallic VO2
No evidence of decoupling between electronic and structural orderings
Results favor structural instability as the transition trigger
Abstract
VO2 features concomitant structural and metal-insulator transitions. This poses a challenge for understanding the underlying mechanism: is the transition triggered by a structural or by an electronic instability? The two scenarios are expected to produce very different pre-transitional fluctuations above TC. By combining magnetic susceptibility, IR reflectivity and X-ray diffuse scattering measurements, we observe that metallic VO2 features strong electronic and structural fluctuations towards the insulating monoclinic phase. By measuring resonant diffuse X-ray scattering across the Vanadium K-edge, we search for a potential decoupling between electronic and structural ordering in these fluctuations, finding no evidence of it. While our results do not completely rule out pure electronic fluctuations, they constrain them, favoring the interpretation that the VO2 metal-insulator…
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Taxonomy
TopicsTransition Metal Oxide Nanomaterials · Magneto-Optical Properties and Applications
