paper

A variety of elastic anomalies in orbital-active nearly-itinerant cobalt vanadate spinel

arXiv:1704.07537 · doi:10.1103/PhysRevB.96.014422

Abstract

We perform ultrasound velocity measurements on a single crystal of nearly-metallic spinel CoVO which exhibits a ferrimagnetic phase transition at 165 K. The experiments reveal a variety of elastic anomalies in not only the paramagnetic phase above but also the ferrimagnetic phase below , which should be driven by the nearly-itinerant character of the orbitally-degenerate V 3 electrons. In the paramagnetic phase above , the elastic moduli exhibit elastic-mode-dependent unusual temperature variations, suggesting the existence of a dynamic spin-cluster state. Furthermore, above , the sensitive magnetic-field response of the elastic moduli suggests that, with the negative magnetoresistance, the magnetic-field-enhanced nearly-itinerant character of the V 3 electrons emerges from the spin-cluster state. This should be triggered by the inter-V-site interactions acting on the orbitally-degenerate 3 electrons. In the ferrimagnetic phase below , the elastic moduli exhibit distinct anomalies at 95 K and 50 K, with a sign change of the magnetoresistance at (positive below ) and an enhancement of the positive magnetoresistance below , respectively. These observations below suggest the successive occurrence of an orbital glassy order at and a structural phase transition at , where the rather localized character of the V 3 electrons evolves below and is further enhanced below .

9 pages, 4 figures