Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session S50: Vanadium Oxides Metal Insulator Transitions
11:15 AM–2:03 PM,
Thursday, March 5, 2020
Room: Mile High Ballroom 1C
Sponsoring
Unit:
DCMP
Chair: Keshav Shrestha, Natl High Magnetic Field Lab
Abstract: S50.00001 : Unraveling the Mott-Peierls intrigue in Vanadium dioxide
Presenter:
Adriano Amaricci
(SISSA)
Authors:
Adriano Amaricci
(SISSA)
Michele Fabrizio
(SISSA)
Francesco Grandi
(Department of Physics, Erlangen University)
The nature of the rutile metal to monoclinic insulator transition in this system triggered a longstanding debate about which comes first, the Mott localisation or the Peierls distortion. Here, we show that the electronic correlations and the lattice vibrations conspire to stabilise the monoclinic insulator, and so they must be treated on equal footing. We design a minimal model for VO2 that includes all the important physical ingredients: the electronic correlations, the multi-orbital character, and the two components antiferrodistortive mode that condenses in the monoclinic insulator. We solve this model by dynamical mean-field theory within the adiabatic Born-Oppenheimer (BO) approximation. Consistently with the first-order character of the metal-insulator transition, the BO potential has a rich landscape describing the distorted and undistorted phases, and which translates into an equally rich thermodynamics that we uncover by the Monte Carlo method. Remarkably, we find that a distorted metal phase intrudes between the low-temperature distorted insulator and high-temperature undistorted metal, which sheds new light on the debated experimental evidence of a monoclinic metallic phase.
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