Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime

We analyse the thermodynamic Bethe Ansatz equations of the one-dimensional half-filled Hubbard model in the 'spin-disordered regime', which is characterized by the temperature being much larger than the magnetic energy scale, but small compared to the Mott-Hubbard gap. In this regime the t...

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Үндсэн зохиолчид: Ejima, S, Essler, F, Gebhard, F
Формат: Journal article
Хэл сонгох:English
Хэвлэсэн: 2006
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author Ejima, S
Essler, F
Gebhard, F
author_facet Ejima, S
Essler, F
Gebhard, F
author_sort Ejima, S
collection OXFORD
description We analyse the thermodynamic Bethe Ansatz equations of the one-dimensional half-filled Hubbard model in the 'spin-disordered regime', which is characterized by the temperature being much larger than the magnetic energy scale, but small compared to the Mott-Hubbard gap. In this regime the thermodynamics of the Hubbard model can be thought of in terms of gapped charged excitations with an effective dispersion and spin degrees of freedom that only contribute entropically. In particular, the internal energy and the effective dispersion become essentially independent of temperature. An interpretation of this regime in terms of a putative interacting-electron system at zero temperature leads to a metal-insulator transition at a finite interaction strength above which the gap opens linearly. We relate these observations to studies of the Mott-Hubbard transition in the limit of infinite dimensions. © 2006 IOP Publishing Ltd.
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spelling oxford-uuid:f1d898b5-cf80-4bfd-9bb1-86ddbf312d242022-03-27T11:59:03ZThermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regimeJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f1d898b5-cf80-4bfd-9bb1-86ddbf312d24EnglishSymplectic Elements at Oxford2006Ejima, SEssler, FGebhard, FWe analyse the thermodynamic Bethe Ansatz equations of the one-dimensional half-filled Hubbard model in the 'spin-disordered regime', which is characterized by the temperature being much larger than the magnetic energy scale, but small compared to the Mott-Hubbard gap. In this regime the thermodynamics of the Hubbard model can be thought of in terms of gapped charged excitations with an effective dispersion and spin degrees of freedom that only contribute entropically. In particular, the internal energy and the effective dispersion become essentially independent of temperature. An interpretation of this regime in terms of a putative interacting-electron system at zero temperature leads to a metal-insulator transition at a finite interaction strength above which the gap opens linearly. We relate these observations to studies of the Mott-Hubbard transition in the limit of infinite dimensions. © 2006 IOP Publishing Ltd.
spellingShingle Ejima, S
Essler, F
Gebhard, F
Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime
title Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime
title_full Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime
title_fullStr Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime
title_full_unstemmed Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime
title_short Thermodynamics of the one-dimensional half-filled Hubbard model in the spin-disordered regime
title_sort thermodynamics of the one dimensional half filled hubbard model in the spin disordered regime
work_keys_str_mv AT ejimas thermodynamicsoftheonedimensionalhalffilledhubbardmodelinthespindisorderedregime
AT esslerf thermodynamicsoftheonedimensionalhalffilledhubbardmodelinthespindisorderedregime
AT gebhardf thermodynamicsoftheonedimensionalhalffilledhubbardmodelinthespindisorderedregime