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dc.contributor.authorBudrin, K. S.en
dc.contributor.authorPanov, Y. D.en
dc.contributor.authorMoskvin, A. S.en
dc.contributor.authorChikov, A. A.en
dc.date.accessioned2019-07-22T06:45:48Z-
dc.date.available2019-07-22T06:45:48Z-
dc.date.issued2018-
dc.identifier.citationUnconventional phase separation in the model 2D spin-pseudospin system / K. S. Budrin, Y. D. Panov, A. S. Moskvin et al. // EPJ Web of Conferences. — 2018. — Vol. 185. — 11006.en
dc.identifier.issn2101-6275-
dc.identifier.otherhttps://www.epj-conferences.org/articles/epjconf/pdf/2018/20/epjconf_mism2017_11006.pdfpdf
dc.identifier.other1good_DOI
dc.identifier.other4a83d36e-da7d-4311-b9a9-62e78564fa6fpure_uuid
dc.identifier.otherhttp://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85052905997m
dc.identifier.urihttp://elar.urfu.ru/handle/10995/75244-
dc.description.abstractThe competition of charge and spin orderings is a challenging problem for strongly correlated systems, in particular, for high-Tc cuprates. We addressed a simplified static 2D spin-pseudospin model which takes into account both conventional spin exchange coupling and the on-site and inter-site charge correlations. Classical Monte-Carlo calculations for large square lattices show that homogeneous ground state antiferromagnetic solutions found in a mean-field approximation are unstable with respect to phase separation into the charge and spin subsystems behaving like immiscible quantum liquids. In this case, with lowering of a temperature one can observe two sequential phase transitions: first, antiferromagnetic ordering in the spin subsystem diluted by randomly distributed charges, then, the charge condensation in the charge droplets. The inhomogeneous droplet phase reduces the energy of the system and changes the diagram of the ground states. On the other hand, the ground state energy of charge-ordered state in a mean-field approximation exactly matches the numerical Monte-Carlo calculations. The doped charges in this case are distributed randomly over a system in the whole temperature range. Various thermodynamic properties of the 2D spin-pseudospin system are studied by Monte-Carlo simulation. © 2018 The Authors, published by EDP Sciences.en
dc.description.sponsorshipThe work is supported by Act 211 Government of the Russian Federation, agreement No 02.A03.21.0006 and by the Ministry of Education and Science, projects 2277 and 5719.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherEDP Sciencesen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceEPJ Web of Conferencesen
dc.titleUnconventional phase separation in the model 2D spin-pseudospin systemen
dc.typeConference Paperen
dc.typeinfo:eu-repo/semantics/conferenceObjecten
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.conference.name2017 Moscow International Symposium on Magnetism, MISM 2017en
dc.conference.date1 July 2017 through 5 July 2017-
dc.identifier.rsi35720435-
dc.identifier.doi10.1051/epjconf/201818511006-
dc.identifier.scopus85052905997-
local.affiliationUral Federal University, Institute of Natural Sciences, 19 Mira street, Ekaterinburg, 620002, Russian Federationen
local.contributor.employeeБудрин Константин Сергеевичru
local.contributor.employeeПанов Юрий Демьяновичru
local.contributor.employeeМосквин Александр Сергеевичru
local.contributor.employeeЧиков Александр Алексеевичru
local.volume185-
dc.identifier.wos000468037700156-
local.identifier.pure7908660-
local.description.order11006-
local.identifier.eid2-s2.0-85052905997-
local.identifier.wosWOS:000468037700156-
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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