HEAL DSpace

BETHE-PEIERLS STUDY OF MAGNETIC FIELD INDUCED PHASE TRANSITIONS.

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dc.contributor.author Paraskevaidis, CE en
dc.contributor.author Papatriantafillou, CT en
dc.date.accessioned 2014-03-01T01:06:32Z
dc.date.available 2014-03-01T01:06:32Z
dc.date.issued 1986 en
dc.identifier.issn 0370-1972 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/9461
dc.relation.uri http://www.scopus.com/inward/record.url?eid=2-s2.0-0022738658&partnerID=40&md5=51e1f49eaa386a4bf0fbdf80003e34f7 en
dc.subject.classification Physics, Condensed Matter en
dc.subject.other MAGNETIC FIELD EFFECTS en
dc.subject.other MATHEMATICAL STATISTICS - Monte Carlo Methods en
dc.subject.other THERMODYNAMICS en
dc.subject.other ISING ANTIFERROMAGNET en
dc.subject.other MAGNETIC FIELD INDUCED PHASE TRANSITIONS en
dc.subject.other MAGNETIC MATERIALS en
dc.title BETHE-PEIERLS STUDY OF MAGNETIC FIELD INDUCED PHASE TRANSITIONS. en
heal.type journalArticle en
heal.language English en
heal.publicationDate 1986 en
heal.abstract Using a Bethe-Peierls like approach the thermodynamic behavior of a two-sublattice Ising antiferromagnet is studied focusing on low temperatures and high magnetic fields portion of its phase diagram, where the system undergoes magnetic field-induced phase transitions. The results for the H-T phase diagram agree quite well with those from Monte Carlo calculations and show a 'peculiar' boundary at low temperatures and high magnetic fields separating the AF from the PM state in which, in a certain narrow range of magnetic field values, the system undergoes an AF to PM phase transition both by increasing of decreasing the temperature at constant magnetic field. The behavior of the system is investigated in this 'peculiar' regime. en
heal.publisher AKADEMIE VERLAG GMBH en
heal.journalName Physica Status Solidi (B) Basic Research en
dc.identifier.isi ISI:A1986D385500014 en
dc.identifier.volume 135 en
dc.identifier.issue 2 en
dc.identifier.spage 571 en
dc.identifier.epage 579 en


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