Breakdown of the Nagaoka phase at finite doping

Detalhes bibliográficos
Autor(a) principal: Ivantsov, Ilya
Data de Publicação: 2017
Outros Autores: Ferraz Filho, Álvaro, Kochetov, Evgenii
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRN
Texto Completo: https://repositorio.ufrn.br/jspui/handle/123456789/28806
https://doi.org/10.1103/PhysRevB.95.155115
Resumo: The Nagaoka (U =∞) limit of the Hubbard model on a square lattice is mapped onto the itinerant-localized Kondo model at infinitely strong coupling. Such a model is well suited to perform quantum Monte Carlo (QMC) simulations to compute spin correlation functions. For periodic boundary conditions, this model is shown to exhibit no short-range ferromagnetic (FM) spin correlations at any doping δ 0.01 and at finite temperature T = 0.1t. Our simulations give no indication that there is a tendency towards ferromagnetic ordering in the ground state, with more than one hole. Employing on the other hand the open boundary conditions (or mixed boundary conditions) may result in the qualitatively different results for the thermodynamic limit depending on the way one chooses to approach this limit. These observations imply that the relevant thermodynamic limit remains unclear.
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spelling Ivantsov, IlyaFerraz Filho, ÁlvaroKochetov, Evgenii2020-04-16T19:17:31Z2020-04-16T19:17:31Z2017-04-11IVANTSOV, Ilya; FERRAZ FILHO, Álvaro; KOCHETOV, Evgenii. Breakdown of the Nagaoka phase at finite doping. Physical Review B, [s.l.], v. 95, n. 15, p. 1551151-1551158, 11 abr. 2017. ISSN 2469-9969 versão online. DOI https://doi.org/10.1103/PhysRevB.95.155115. Disponível em: https://journals.aps.org/prb/abstract/10.1103/PhysRevB.95.155115. Acesso em: 16 abr. 2020.2469-9950 (print), 2469-9969 (online)https://repositorio.ufrn.br/jspui/handle/123456789/28806https://doi.org/10.1103/PhysRevB.95.155115American Physical SocietyBreakdown of the nagaoka phaseFinite dopinBreakdown of the Nagaoka phase at finite dopinginfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleThe Nagaoka (U =∞) limit of the Hubbard model on a square lattice is mapped onto the itinerant-localized Kondo model at infinitely strong coupling. Such a model is well suited to perform quantum Monte Carlo (QMC) simulations to compute spin correlation functions. For periodic boundary conditions, this model is shown to exhibit no short-range ferromagnetic (FM) spin correlations at any doping δ 0.01 and at finite temperature T = 0.1t. Our simulations give no indication that there is a tendency towards ferromagnetic ordering in the ground state, with more than one hole. Employing on the other hand the open boundary conditions (or mixed boundary conditions) may result in the qualitatively different results for the thermodynamic limit depending on the way one chooses to approach this limit. These observations imply that the relevant thermodynamic limit remains unclear.engreponame:Repositório Institucional da UFRNinstname:Universidade Federal do Rio Grande do Norte (UFRN)instacron:UFRNinfo:eu-repo/semantics/openAccessORIGINALBreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdfBreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdfArtigoapplication/pdf405136https://repositorio.ufrn.br/bitstream/123456789/28806/1/BreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf41c2ca98baf637eab974e56aaa5df02aMD51LICENSElicense.txtlicense.txttext/plain; charset=utf-81484https://repositorio.ufrn.br/bitstream/123456789/28806/2/license.txte9597aa2854d128fd968be5edc8a28d9MD52TEXTBreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf.txtBreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf.txtExtracted texttext/plain34488https://repositorio.ufrn.br/bitstream/123456789/28806/3/BreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf.txt508b15407ceca9ac04b7d4acbf65931cMD53THUMBNAILBreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf.jpgBreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf.jpgGenerated Thumbnailimage/jpeg1758https://repositorio.ufrn.br/bitstream/123456789/28806/4/BreakdownOftheNagaokaPhaseAtFiniteDoping_2017.pdf.jpg92271e427297a4ae92ebe6310847ef00MD54123456789/288062020-05-05 00:05:15.131oai:https://repositorio.ufrn.br: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Repositório de PublicaçõesPUBhttp://repositorio.ufrn.br/oai/opendoar:2020-05-05T03:05:15Repositório Institucional da UFRN - Universidade Federal do Rio Grande do Norte (UFRN)false
dc.title.pt_BR.fl_str_mv Breakdown of the Nagaoka phase at finite doping
title Breakdown of the Nagaoka phase at finite doping
spellingShingle Breakdown of the Nagaoka phase at finite doping
Ivantsov, Ilya
Breakdown of the nagaoka phase
Finite dopin
title_short Breakdown of the Nagaoka phase at finite doping
title_full Breakdown of the Nagaoka phase at finite doping
title_fullStr Breakdown of the Nagaoka phase at finite doping
title_full_unstemmed Breakdown of the Nagaoka phase at finite doping
title_sort Breakdown of the Nagaoka phase at finite doping
author Ivantsov, Ilya
author_facet Ivantsov, Ilya
Ferraz Filho, Álvaro
Kochetov, Evgenii
author_role author
author2 Ferraz Filho, Álvaro
Kochetov, Evgenii
author2_role author
author
dc.contributor.author.fl_str_mv Ivantsov, Ilya
Ferraz Filho, Álvaro
Kochetov, Evgenii
dc.subject.por.fl_str_mv Breakdown of the nagaoka phase
Finite dopin
topic Breakdown of the nagaoka phase
Finite dopin
description The Nagaoka (U =∞) limit of the Hubbard model on a square lattice is mapped onto the itinerant-localized Kondo model at infinitely strong coupling. Such a model is well suited to perform quantum Monte Carlo (QMC) simulations to compute spin correlation functions. For periodic boundary conditions, this model is shown to exhibit no short-range ferromagnetic (FM) spin correlations at any doping δ 0.01 and at finite temperature T = 0.1t. Our simulations give no indication that there is a tendency towards ferromagnetic ordering in the ground state, with more than one hole. Employing on the other hand the open boundary conditions (or mixed boundary conditions) may result in the qualitatively different results for the thermodynamic limit depending on the way one chooses to approach this limit. These observations imply that the relevant thermodynamic limit remains unclear.
publishDate 2017
dc.date.issued.fl_str_mv 2017-04-11
dc.date.accessioned.fl_str_mv 2020-04-16T19:17:31Z
dc.date.available.fl_str_mv 2020-04-16T19:17:31Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
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status_str publishedVersion
dc.identifier.citation.fl_str_mv IVANTSOV, Ilya; FERRAZ FILHO, Álvaro; KOCHETOV, Evgenii. Breakdown of the Nagaoka phase at finite doping. Physical Review B, [s.l.], v. 95, n. 15, p. 1551151-1551158, 11 abr. 2017. ISSN 2469-9969 versão online. DOI https://doi.org/10.1103/PhysRevB.95.155115. Disponível em: https://journals.aps.org/prb/abstract/10.1103/PhysRevB.95.155115. Acesso em: 16 abr. 2020.
dc.identifier.uri.fl_str_mv https://repositorio.ufrn.br/jspui/handle/123456789/28806
dc.identifier.issn.none.fl_str_mv 2469-9950 (print), 2469-9969 (online)
dc.identifier.doi.none.fl_str_mv https://doi.org/10.1103/PhysRevB.95.155115
identifier_str_mv IVANTSOV, Ilya; FERRAZ FILHO, Álvaro; KOCHETOV, Evgenii. Breakdown of the Nagaoka phase at finite doping. Physical Review B, [s.l.], v. 95, n. 15, p. 1551151-1551158, 11 abr. 2017. ISSN 2469-9969 versão online. DOI https://doi.org/10.1103/PhysRevB.95.155115. Disponível em: https://journals.aps.org/prb/abstract/10.1103/PhysRevB.95.155115. Acesso em: 16 abr. 2020.
2469-9950 (print), 2469-9969 (online)
url https://repositorio.ufrn.br/jspui/handle/123456789/28806
https://doi.org/10.1103/PhysRevB.95.155115
dc.language.iso.fl_str_mv eng
language eng
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
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dc.publisher.none.fl_str_mv American Physical Society
publisher.none.fl_str_mv American Physical Society
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