arXiv:2301.08254 [cond-mat.stat-mech]AbstractReferencesReviewsResources
Critical Slowing Down at the Abrupt Mott Transition: When the First-Order Phase Transition Becomes Zeroth-Order and Looks Like Second-Order
Satyaki Kundu, Tapas Bar, Rajesh Kumble Nayak, Bhavtosh Bansal
Published 2023-01-19Version 1
We report that the thermally-induced Mott transition in vanadium sesquioxide shows critical-slowing-down and enhanced variance ('critical opalescence') of the order parameter fluctuations measured through low-frequency resistance-noise spectroscopy. Coupled with the observed increase of also the phase-ordering time, these features suggest that the strong abrupt transition is controlled by a critical-like singularity in the hysteretic metastable phase. The singularity is identified with the spinodal point and is a likely consequence of the strain-induced long-range interaction.
Comments: 14 pages, 16 figures
Journal: Phys. Rev. Lett. 124, 095703 (2020)
Categories: cond-mat.stat-mech, cond-mat.str-el
Keywords: first-order phase transition, abrupt mott transition, critical slowing, zeroth-order, second-order
Tags: journal article
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