Literature DB >> 30240239

Uncovering the Mechanism of the Impurity-Selective Mott Transition in Paramagnetic V_{2}O_{3}.

Frank Lechermann1, Noam Bernstein2, I I Mazin2, Roser Valentí3.   

Abstract

While the phase diagrams of the one- and multiorbital Hubbard model have been well studied, the physics of real Mott insulators is often much richer, material dependent, and poorly understood. In the prototype Mott insulator V_{2}O_{3}, chemical pressure was initially believed to explain why the paramagnetic-metal to antiferromagnetic-insulator transition temperature is lowered by Ti doping while Cr doping strengthens correlations, eventually rendering the high-temperature phase paramagnetic insulating. However, this scenario has been recently shown both experimentally and theoretically to be untenable. Based on full structural optimization, we demonstrate via the charge self-consistent combination of density functional theory and dynamical mean-field theory that changes in the V_{2}O_{3} phase diagram are driven by defect-induced local symmetry breakings resulting from dramatically different couplings of Cr and Ti dopants to the host system. This finding emphasizes the high sensitivity of the Mott metal-insulator transition to the local environment and the importance of accurately accounting for the one-electron Hamiltonian, since correlations crucially respond to it.

Entities:  

Year:  2018        PMID: 30240239     DOI: 10.1103/PhysRevLett.121.106401

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Imaging the itinerant-to-localized transmutation of electrons across the metal-to-insulator transition in V2O3.

Authors:  Maximilian Thees; Min-Han Lee; Rosa Luca Bouwmeester; Pedro H Rezende-Gonçalves; Emma David; Alexandre Zimmers; Franck Fortuna; Emmanouil Frantzeskakis; Nicolas M Vargas; Yoav Kalcheim; Patrick Le Fèvre; Koji Horiba; Hiroshi Kumigashira; Silke Biermann; Juan Trastoy; Marcelo J Rozenberg; Ivan K Schuller; Andrés F Santander-Syro
Journal:  Sci Adv       Date:  2021-11-03       Impact factor: 14.136

  1 in total

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