Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)

We search for marginal Fermi-liquid behavior in the two-band Hubbard model with one narrow band. We consider the limit of low electron densities in the bands and strong intraband and interband Hubbard interactions. We analyze the influence of electron–polaron effect and other mechanisms of mass-enha...

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Опубліковано в: :Физика низких температур
Дата:2011
Автори: Kagan, M.Yu., Valkov, V.V.
Формат: Стаття
Мова:English
Опубліковано: Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України 2011
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Онлайн доступ:https://nasplib.isofts.kiev.ua/handle/123456789/118435
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Цитувати:Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article) / M.Yu. Kagan, V.V. Valkov // Физика низких температур. — 2011. — Т. 37, № 1. — С. 84–99. — Бібліогр.: 47 назв. — англ.

Репозитарії

Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-118435
record_format dspace
spelling Kagan, M.Yu.
Valkov, V.V.
2017-05-30T10:56:17Z
2017-05-30T10:56:17Z
2011
Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article) / M.Yu. Kagan, V.V. Valkov // Физика низких температур. — 2011. — Т. 37, № 1. — С. 84–99. — Бібліогр.: 47 назв. — англ.
0132-6414
PACS: 71.10.–w, 71.27.+a, 71.28.+d
https://nasplib.isofts.kiev.ua/handle/123456789/118435
We search for marginal Fermi-liquid behavior in the two-band Hubbard model with one narrow band. We consider the limit of low electron densities in the bands and strong intraband and interband Hubbard interactions. We analyze the influence of electron–polaron effect and other mechanisms of mass-enhancement (related to momentum dependence of the self-energies) on effective mass and scattering times of light and heavy components in the clean case (electron–electron scattering and no impurities). We find the tendency towards phaseseparation (towards negative partial compressibility of heavy particles) in a 3D case for large mismatch between the densities of heavy and light bands in a strong coupling limit. We also observe that for low temperatures and equal densities the resistivity in a homogeneous state R(T)~T² behaves in a Fermi-liquid fashion both in 3D and 2D cases. For temperatures higher then effective bandwidth for heavy electrons T>Wh* the coherent behavior of heavy component is totally destroyed. The heavy particles move diffusively in the surrounding of light particles. In the same time the light particles scatter on the heavy ones as if on immobile (static) impurities. In this regime the heavy component is marginal, while the light one is not. The resistivity goes on saturation for T>Wh* in the 3D case. In 2D the resistivity has a maximum and localization tail due to weak-localization corrections of Altshuler–Aronov type. Such behavior of resistivity in 3D could be relevant for some uranium-based heavy-fermion compounds like UNi₂Al₃ and in 2D for some other mixed-valence compounds possibly including the layered manganites. We also consider briefly the superconductive (SC) instability in the model. The leading instability is towards p-wave pairing and is governed by enhanced Kohn–Luttinger mechanism of SC at low electron density. The critical temperature corresponds to the pairing of heavy electrons via polarization of the light ones in 2D.
We are grateful to A.S. Alexandrov, A.F. Andreev, M.A. Baranov, Yu. Bichkov, A.V. Chubukov, D.V. Efremov, A.S. Hewson, K.A. Kikoin, F.V. Kusmartsev, P. Nozieres, T.M. Rice, A.O. Sboychakov, P. Thalmeer, C.M. Varma, D. Vollhardt, P. Woelfle, A. Yaresko and especially to P. Fulde, Yu. Kagan, K.I. Kugel, and N.V. Prokof’ev for a lot of simulating discussions on this subject and acknowledge financial support of the RFBR grants # 08-02-00224, 08-02-00212. M.Yu.K. is also grateful to Leverhulme trust for granting the visit to Loughborough University, where this work was completed.
en
Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
Физика низких температур
Сверхпроводимость
Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
spellingShingle Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
Kagan, M.Yu.
Valkov, V.V.
Сверхпроводимость
title_short Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
title_full Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
title_fullStr Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
title_full_unstemmed Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article)
title_sort anomalous resistivity and superconductivity in the two-band hubbard model with one narrow band (review article)
author Kagan, M.Yu.
Valkov, V.V.
author_facet Kagan, M.Yu.
Valkov, V.V.
topic Сверхпроводимость
topic_facet Сверхпроводимость
publishDate 2011
language English
container_title Физика низких температур
publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
format Article
description We search for marginal Fermi-liquid behavior in the two-band Hubbard model with one narrow band. We consider the limit of low electron densities in the bands and strong intraband and interband Hubbard interactions. We analyze the influence of electron–polaron effect and other mechanisms of mass-enhancement (related to momentum dependence of the self-energies) on effective mass and scattering times of light and heavy components in the clean case (electron–electron scattering and no impurities). We find the tendency towards phaseseparation (towards negative partial compressibility of heavy particles) in a 3D case for large mismatch between the densities of heavy and light bands in a strong coupling limit. We also observe that for low temperatures and equal densities the resistivity in a homogeneous state R(T)~T² behaves in a Fermi-liquid fashion both in 3D and 2D cases. For temperatures higher then effective bandwidth for heavy electrons T>Wh* the coherent behavior of heavy component is totally destroyed. The heavy particles move diffusively in the surrounding of light particles. In the same time the light particles scatter on the heavy ones as if on immobile (static) impurities. In this regime the heavy component is marginal, while the light one is not. The resistivity goes on saturation for T>Wh* in the 3D case. In 2D the resistivity has a maximum and localization tail due to weak-localization corrections of Altshuler–Aronov type. Such behavior of resistivity in 3D could be relevant for some uranium-based heavy-fermion compounds like UNi₂Al₃ and in 2D for some other mixed-valence compounds possibly including the layered manganites. We also consider briefly the superconductive (SC) instability in the model. The leading instability is towards p-wave pairing and is governed by enhanced Kohn–Luttinger mechanism of SC at low electron density. The critical temperature corresponds to the pairing of heavy electrons via polarization of the light ones in 2D.
issn 0132-6414
url https://nasplib.isofts.kiev.ua/handle/123456789/118435
citation_txt Anomalous resistivity and superconductivity in the two-band Hubbard model with one narrow band (Review Article) / M.Yu. Kagan, V.V. Valkov // Физика низких температур. — 2011. — Т. 37, № 1. — С. 84–99. — Бібліогр.: 47 назв. — англ.
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AT valkovvv anomalousresistivityandsuperconductivityinthetwobandhubbardmodelwithonenarrowbandreviewarticle
first_indexed 2025-12-07T16:12:59Z
last_indexed 2025-12-07T16:12:59Z
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