Rise and fall of Landau’s quasiparticles while approaching the Mott transition

Charge transport in strongly correlated electron systems is not fully understood. Here, the authors show that resilient quasiparticles at finite frequency persist into the bad-metal regime near a Mott insulator, where dynamical localization results in a ‘displaced Drude peak’ and strongly enhanced d...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Andrej Pustogow, Yohei Saito, Anja Löhle, Miriam Sanz Alonso, Atsushi Kawamoto, Vladimir Dobrosavljević, Martin Dressel, Simone Fratini
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
Materias:
Q
Acceso en línea:https://doaj.org/article/63030cbabe024f41a4e5938e6ab73557
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:63030cbabe024f41a4e5938e6ab73557
record_format dspace
spelling oai:doaj.org-article:63030cbabe024f41a4e5938e6ab735572021-12-02T13:32:57ZRise and fall of Landau’s quasiparticles while approaching the Mott transition10.1038/s41467-021-21741-z2041-1723https://doaj.org/article/63030cbabe024f41a4e5938e6ab735572021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21741-zhttps://doaj.org/toc/2041-1723Charge transport in strongly correlated electron systems is not fully understood. Here, the authors show that resilient quasiparticles at finite frequency persist into the bad-metal regime near a Mott insulator, where dynamical localization results in a ‘displaced Drude peak’ and strongly enhanced dc resistivity.Andrej PustogowYohei SaitoAnja LöhleMiriam Sanz AlonsoAtsushi KawamotoVladimir DobrosavljevićMartin DresselSimone FratiniNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Andrej Pustogow
Yohei Saito
Anja Löhle
Miriam Sanz Alonso
Atsushi Kawamoto
Vladimir Dobrosavljević
Martin Dressel
Simone Fratini
Rise and fall of Landau’s quasiparticles while approaching the Mott transition
description Charge transport in strongly correlated electron systems is not fully understood. Here, the authors show that resilient quasiparticles at finite frequency persist into the bad-metal regime near a Mott insulator, where dynamical localization results in a ‘displaced Drude peak’ and strongly enhanced dc resistivity.
format article
author Andrej Pustogow
Yohei Saito
Anja Löhle
Miriam Sanz Alonso
Atsushi Kawamoto
Vladimir Dobrosavljević
Martin Dressel
Simone Fratini
author_facet Andrej Pustogow
Yohei Saito
Anja Löhle
Miriam Sanz Alonso
Atsushi Kawamoto
Vladimir Dobrosavljević
Martin Dressel
Simone Fratini
author_sort Andrej Pustogow
title Rise and fall of Landau’s quasiparticles while approaching the Mott transition
title_short Rise and fall of Landau’s quasiparticles while approaching the Mott transition
title_full Rise and fall of Landau’s quasiparticles while approaching the Mott transition
title_fullStr Rise and fall of Landau’s quasiparticles while approaching the Mott transition
title_full_unstemmed Rise and fall of Landau’s quasiparticles while approaching the Mott transition
title_sort rise and fall of landau’s quasiparticles while approaching the mott transition
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/63030cbabe024f41a4e5938e6ab73557
work_keys_str_mv AT andrejpustogow riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT yoheisaito riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT anjalohle riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT miriamsanzalonso riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT atsushikawamoto riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT vladimirdobrosavljevic riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT martindressel riseandfalloflandausquasiparticleswhileapproachingthemotttransition
AT simonefratini riseandfalloflandausquasiparticleswhileapproachingthemotttransition
_version_ 1718392855302504448