Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4

Abstract Inspired by the physics of the Miyake - Narikiyo model (MN) for superconductivity in the γ sheet of Sr2RuO4, we set out to investigate numerically the behavior caused by a non-magnetic disorder in the imaginary part of the elastic scattering matrix for an anisotropic tightbinding model. We perform simulations by going from the Unitary to the Born scattering limit, varying the parameter c which is inverse to the strength of the impurity potential. It is found that the unitary and intermedia limits persist for different orders of magnitude in simulating the disorder concentration. Subsequently and in order to find the MN tiny gap, we perform a numerical study of the unitary limit as a function of disorder concentration, to find the tiny anomalous gap.

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Autores principales: Contreras,P., Osorio,D., Ramazanov,Sh. M.
Formato: Digital revista
Idioma:English
Publicado: Sociedad Mexicana de Física 2022
Acceso en línea:http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2022000200302
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spelling oai:scielo:S0035-001X20220002003022023-03-21Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4Contreras,P.Osorio,D.Ramazanov,Sh. M. Unconventional superconductivity triplet reversal time broken state γ sheet Sr2RuO4 non-magnetic disorder elastic scattering cross-section tiny gap Abstract Inspired by the physics of the Miyake - Narikiyo model (MN) for superconductivity in the γ sheet of Sr2RuO4, we set out to investigate numerically the behavior caused by a non-magnetic disorder in the imaginary part of the elastic scattering matrix for an anisotropic tightbinding model. We perform simulations by going from the Unitary to the Born scattering limit, varying the parameter c which is inverse to the strength of the impurity potential. It is found that the unitary and intermedia limits persist for different orders of magnitude in simulating the disorder concentration. Subsequently and in order to find the MN tiny gap, we perform a numerical study of the unitary limit as a function of disorder concentration, to find the tiny anomalous gap.info:eu-repo/semantics/openAccessSociedad Mexicana de FísicaRevista mexicana de física v.68 n.2 20222022-04-01info:eu-repo/semantics/articletext/htmlhttp://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2022000200302en10.31349/revmexfis.68.020502
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country México
countrycode MX
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region America del Norte
libraryname SciELO
language English
format Digital
author Contreras,P.
Osorio,D.
Ramazanov,Sh. M.
spellingShingle Contreras,P.
Osorio,D.
Ramazanov,Sh. M.
Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4
author_facet Contreras,P.
Osorio,D.
Ramazanov,Sh. M.
author_sort Contreras,P.
title Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4
title_short Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4
title_full Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4
title_fullStr Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4
title_full_unstemmed Non-magnetic tight binding disorder effects in the γ sheet of Sr2RuO4
title_sort non-magnetic tight binding disorder effects in the γ sheet of sr2ruo4
description Abstract Inspired by the physics of the Miyake - Narikiyo model (MN) for superconductivity in the γ sheet of Sr2RuO4, we set out to investigate numerically the behavior caused by a non-magnetic disorder in the imaginary part of the elastic scattering matrix for an anisotropic tightbinding model. We perform simulations by going from the Unitary to the Born scattering limit, varying the parameter c which is inverse to the strength of the impurity potential. It is found that the unitary and intermedia limits persist for different orders of magnitude in simulating the disorder concentration. Subsequently and in order to find the MN tiny gap, we perform a numerical study of the unitary limit as a function of disorder concentration, to find the tiny anomalous gap.
publisher Sociedad Mexicana de Física
publishDate 2022
url http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2022000200302
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AT osoriod nonmagnetictightbindingdisordereffectsinthegsheetofsr2ruo4
AT ramazanovshm nonmagnetictightbindingdisordereffectsinthegsheetofsr2ruo4
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