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hal.structure.identifierDepartment of Solid State and Theoretical Physics
dc.contributor.authorENACHESCU, Cristian
hal.structure.identifierDepartment of Solid State and Theoretical Physics
dc.contributor.authorTANASA, Radu
hal.structure.identifierDepartment of Solid State and Theoretical Physics
dc.contributor.authorSTANCU, Alexandru
hal.structure.identifierInstitut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
dc.contributor.authorCHASTANET, Guillaume
hal.structure.identifierInstitut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
dc.contributor.authorLÉTARD, Jean-François
hal.structure.identifierLaboratoire de magnétisme et d'optique de Versailles [LMOV]
dc.contributor.authorLINARES, Jorge
hal.structure.identifierLaboratoire de magnétisme et d'optique de Versailles [LMOV]
dc.contributor.authorVARRET, François
dc.date.issued2006
dc.identifier.issn0021-8979
dc.description.abstractEnThe light-induced bistability under permanent irradiation (LITH: light-induced thermal hysteresis), due to the competition between light irradiation and self-accelerated relaxation, shows crucially rate-dependent hysteresis. Major and minor hysteresis loops for [Fe(PM-BiA)2(NCS)2] spin crossover compound have been measured. Using appropriate master equations, distribution data from the first-order reversal curves diagrams of the purely thermal hysteresis, and parameter values previously derived from relaxation curves, we could simulate the LITH experimental data. The tunneling contribution to the relaxation rate revealed to be a key factor for the final agreement.
dc.language.isoen
dc.publisherAmerican Institute of Physics
dc.subject.enSpin crossover
dc.subject.enMagnetic phase boundaries
dc.subject.enOptical bistability
dc.subject.enmultistability
dc.subject.enand switching
dc.subject.enincluding local field effects
dc.title.enRate-dependent light-induced thermal hysteresis of [Fe(PM-BiA)2(NCS)2] spin transition complex
dc.typeArticle de revue
dc.identifier.doi10.1063/1.2167059
dc.subject.halChimie/Matériaux
bordeaux.journalJournal of Applied Physics
bordeaux.page08J504 (3 p.)
bordeaux.volume99
bordeaux.issue8
bordeaux.peerReviewedoui
hal.identifierhal-00087018
hal.version1
hal.popularnon
hal.audienceInternationale
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-00087018v1
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