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dc.contributor.authorBelozerov, A. S.en
dc.contributor.authorKatanin, A. A.en
dc.contributor.authorAnisimov, V. I.en
dc.date.accessioned2024-04-05T16:27:33Z-
dc.date.available2024-04-05T16:27:33Z-
dc.date.issued2023-
dc.identifier.citationBelozerov, AS, Katanin, AA & Anisimov, VI 2023, 'Transition from Pauli paramagnetism to Curie-Weiss behavior in vanadium', Physical Review B, Том. 107, № 3, 035116. https://doi.org/10.1103/PhysRevB.107.035116harvard_pure
dc.identifier.citationBelozerov, A. S., Katanin, A. A., & Anisimov, V. I. (2023). Transition from Pauli paramagnetism to Curie-Weiss behavior in vanadium. Physical Review B, 107(3), [035116]. https://doi.org/10.1103/PhysRevB.107.035116apa_pure
dc.identifier.issn2469-9950-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access, Green3
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85146325951&doi=10.1103%2fPhysRevB.107.035116&partnerID=40&md5=8a40bdf08cc3df8e4af96d3f5cfc3d821
dc.identifier.otherhttps://arxiv.org/pdf/2206.12383pdf
dc.identifier.urihttp://elar.urfu.ru/handle/10995/130626-
dc.description.abstractWe study electron correlations and their impact on magnetic properties of bcc vanadium by a combination of density functional and dynamical mean-field theory. The calculated uniform magnetic susceptibility in bcc structure is of Pauli type at low temperatures, while it obeys the Curie-Weiss law at higher temperatures. Thus, we qualitatively reproduce the experimental temperature dependence of magnetic susceptibility without introducing the martensitic phase transition. Our results for local spin-spin correlation function and local susceptibility reveal that the Curie-Weiss behavior appears due to partial formation of local magnetic moments, which originate from t2g states and occur due to local spin correlations caused by Hund's rule coupling. At the same time, the fermionic quasiparticles remain well defined, while the formation of local moments is accompanied by a deviation from the Fermi-liquid behavior. In particular, the self-energy of the t2g states shows the nonanalytic frequency dependence, which is a characteristic of the spin-freezing behavior, while the quasiparticle damping changes approximately linearly with temperature in the intermediate temperature range 200-700 K. By analyzing the momentum dependence of static magnetic susceptibility, we find incommensurate magnetic correlations, which may provide a mechanism for unconventional superconductivity at low temperatures. © 2023 American Physical Society.en
dc.description.sponsorshipMinistry of Education and Science of the Russian Federation, Minobrnauka: AAAA-A18-118020190098-5; Russian Science Foundation, RSF: 19-12-00012en
dc.description.sponsorshipThe DFT+DMFT calculations were supported by the Russian Science Foundation (Project No. 19-12-00012). The calculations of the particle-hole bubble were supported by the Ministry of Science and Higher Education of the Russian Federation (theme “Electron” No. AAAA-A18-118020190098-5).en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherAmerican Physical Societyen
dc.relationinfo:eu-repo/grantAgreement/RSF//19-12-00012en
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourcePhysical Review B2
dc.sourcePhysical Review Ben
dc.subjectCRYSTAL STRUCTUREen
dc.subjectDENSITY FUNCTIONAL THEORYen
dc.subjectFERMI LIQUIDSen
dc.subjectMAGNETIC MOMENTSen
dc.subjectMEAN FIELD THEORYen
dc.subjectTEMPERATURE DISTRIBUTIONen
dc.subjectVANADIUMen
dc.subjectBCC STRUCTUREen
dc.subjectCURIE WEISS LAWen
dc.subjectCURIE-WEISS BEHAVIORSen
dc.subjectDENSITY FUNCTIONALSen
dc.subjectDYNAMICAL MEAN-FIELD THEORYen
dc.subjectHIGHEST TEMPERATUREen
dc.subjectLOCAL SPINen
dc.subjectLOWS-TEMPERATURESen
dc.subjectPAULI PARAMAGNETISMen
dc.subjectTEMPERATURE DEPENDENCEen
dc.subjectMAGNETIC SUSCEPTIBILITYen
dc.titleTransition from Pauli paramagnetism to Curie-Weiss behavior in vanadiumen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.type|info:eu-repo/semantics/submittedVersionen
dc.identifier.doi10.1103/PhysRevB.107.035116-
dc.identifier.scopus85146325951-
local.contributor.employeeBelozerov, A.S., M. N. Mikheev Institute of Metal Physics, Russian Academy of Sciences, Yekaterinburg, 620108, Russian Federationen
local.contributor.employeeKatanin, A.A., M. N. Mikheev Institute of Metal Physics, Russian Academy of Sciences, Yekaterinburg, 620108, Russian Federation, Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology, Dolgoprudny, 141701, Russian Federationen
local.contributor.employeeAnisimov, V.I., M. N. Mikheev Institute of Metal Physics, Russian Academy of Sciences, Yekaterinburg, 620108, Russian Federation, Institute of Physics and Technology, Ural Federal University, Yekaterinburg, 620002, Russian Federationen
local.issue3-
local.volume107-
dc.identifier.wos000918392800003-
local.contributor.departmentM. N. Mikheev Institute of Metal Physics, Russian Academy of Sciences, Yekaterinburg, 620108, Russian Federationen
local.contributor.departmentCenter for Photonics and 2D Materials, Moscow Institute of Physics and Technology, Dolgoprudny, 141701, Russian Federationen
local.contributor.departmentInstitute of Physics and Technology, Ural Federal University, Yekaterinburg, 620002, Russian Federationen
local.identifier.pure33967698-
local.description.order035116-
local.identifier.eid2-s2.0-85146325951-
local.fund.rsf19-12-00012-
local.identifier.wosWOS:000918392800003-
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