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Truncated mass divergence in a Mott metal

The Mott metal–insulator transition represents one of the most fundamental phenomena in condensed matter physics. Yet, basic tenets of the canonical Brinkman-Rice picture of Mott localization remain to be tested experimentally by quantum oscillation measurements that directly probe the quasiparticle...

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Autores principales: Semeniuk, Konstantin, Chang, Hui, Baglo, Jordan, Friedemann, Sven, Tozer, Stanley W., Coniglio, William A., Gamża, Monika B., Reiss, Pascal, Alireza, Patricia, Leermakers, Inge, McCollam, Alix, Grockowiak, Audrey D., Grosche, F. Malte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10515144/
https://www.ncbi.nlm.nih.gov/pubmed/37695907
http://dx.doi.org/10.1073/pnas.2301456120
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author Semeniuk, Konstantin
Chang, Hui
Baglo, Jordan
Friedemann, Sven
Tozer, Stanley W.
Coniglio, William A.
Gamża, Monika B.
Reiss, Pascal
Alireza, Patricia
Leermakers, Inge
McCollam, Alix
Grockowiak, Audrey D.
Grosche, F. Malte
author_facet Semeniuk, Konstantin
Chang, Hui
Baglo, Jordan
Friedemann, Sven
Tozer, Stanley W.
Coniglio, William A.
Gamża, Monika B.
Reiss, Pascal
Alireza, Patricia
Leermakers, Inge
McCollam, Alix
Grockowiak, Audrey D.
Grosche, F. Malte
author_sort Semeniuk, Konstantin
collection PubMed
description The Mott metal–insulator transition represents one of the most fundamental phenomena in condensed matter physics. Yet, basic tenets of the canonical Brinkman-Rice picture of Mott localization remain to be tested experimentally by quantum oscillation measurements that directly probe the quasiparticle Fermi surface and effective mass. By extending this technique to high pressure, we have examined the metallic state on the threshold of Mott localization in clean, undoped crystals of NiS(2). We find that i) on approaching Mott localization, the quasiparticle mass is strongly enhanced, whereas the Fermi surface remains essentially unchanged; ii) the quasiparticle mass closely follows the divergent form predicted theoretically, establishing charge carrier slowdown as the driver for the metal–insulator transition; iii) this mass divergence is truncated by the metal–insulator transition, placing the Mott critical point inside the insulating section of the phase diagram. The inaccessibility of the Mott critical point in NiS(2) parallels findings at the threshold of ferromagnetism in clean metallic systems, in which criticality at low temperature is almost universally interrupted by first-order transitions or novel emergent phases such as incommensurate magnetic order or unconventional superconductivity.
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spelling pubmed-105151442023-09-23 Truncated mass divergence in a Mott metal Semeniuk, Konstantin Chang, Hui Baglo, Jordan Friedemann, Sven Tozer, Stanley W. Coniglio, William A. Gamża, Monika B. Reiss, Pascal Alireza, Patricia Leermakers, Inge McCollam, Alix Grockowiak, Audrey D. Grosche, F. Malte Proc Natl Acad Sci U S A Physical Sciences The Mott metal–insulator transition represents one of the most fundamental phenomena in condensed matter physics. Yet, basic tenets of the canonical Brinkman-Rice picture of Mott localization remain to be tested experimentally by quantum oscillation measurements that directly probe the quasiparticle Fermi surface and effective mass. By extending this technique to high pressure, we have examined the metallic state on the threshold of Mott localization in clean, undoped crystals of NiS(2). We find that i) on approaching Mott localization, the quasiparticle mass is strongly enhanced, whereas the Fermi surface remains essentially unchanged; ii) the quasiparticle mass closely follows the divergent form predicted theoretically, establishing charge carrier slowdown as the driver for the metal–insulator transition; iii) this mass divergence is truncated by the metal–insulator transition, placing the Mott critical point inside the insulating section of the phase diagram. The inaccessibility of the Mott critical point in NiS(2) parallels findings at the threshold of ferromagnetism in clean metallic systems, in which criticality at low temperature is almost universally interrupted by first-order transitions or novel emergent phases such as incommensurate magnetic order or unconventional superconductivity. National Academy of Sciences 2023-09-11 2023-09-19 /pmc/articles/PMC10515144/ /pubmed/37695907 http://dx.doi.org/10.1073/pnas.2301456120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Physical Sciences
Semeniuk, Konstantin
Chang, Hui
Baglo, Jordan
Friedemann, Sven
Tozer, Stanley W.
Coniglio, William A.
Gamża, Monika B.
Reiss, Pascal
Alireza, Patricia
Leermakers, Inge
McCollam, Alix
Grockowiak, Audrey D.
Grosche, F. Malte
Truncated mass divergence in a Mott metal
title Truncated mass divergence in a Mott metal
title_full Truncated mass divergence in a Mott metal
title_fullStr Truncated mass divergence in a Mott metal
title_full_unstemmed Truncated mass divergence in a Mott metal
title_short Truncated mass divergence in a Mott metal
title_sort truncated mass divergence in a mott metal
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10515144/
https://www.ncbi.nlm.nih.gov/pubmed/37695907
http://dx.doi.org/10.1073/pnas.2301456120
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