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dc.contributor.authorDrobnich, A.V.-
dc.contributor.authorMolnar, Alexander-
dc.contributor.authorGomonnai, A. V.-
dc.contributor.authorVysochanskii, Yulian-
dc.contributor.authorPrits, I. P.-
dc.date.accessioned2024-04-22T08:16:12Z-
dc.date.available2024-04-22T08:16:12Z-
dc.date.issued2003-
dc.identifier.citationThe effect of size factor on the phase transition in Sn2P2S6 crystals: experimental data and simulation in ANNNI model. / A. V. Drobnich, A. A. Molnar, A. V. Gomonnai, Yu. M. Vysochanskii, I. P. Prits. // Condensed Matter Physics. – 2003. – Vol. 6, №2 (34). – PP. 205–212.uk
dc.identifier.urihttps://dspace.uzhnu.edu.ua/jspui/handle/lib/61287-
dc.descriptionSize effect on the fundamental properties of Sn2P2S6 ferroelectric is studied. The decrease of Raman peak frequency, accompanied by the band broadening and asymmetry, is observed in the spectra of microcrystalline Sn2P2S6 powder. Theoretical calculations, performed in the ANNNI model for Sn2P2S6 microcrystals of different size, predict the decrease of the ferroelectric phase transition temperature with the decrease of the microcrystal size parameter.uk
dc.description.abstractSize effect on the fundamental properties of Sn2P2S6 ferroelectric is studied. The decrease of Raman peak frequency, accompanied by the band broadening and asymmetry, is observed in the spectra of microcrystalline Sn2P2S6 powder. Theoretical calculations, performed in the ANNNI model for Sn2P2S6 microcrystals of different size, predict the decrease of the ferroelectric phase transition temperature with the decrease of the microcrystal size parameter.uk
dc.language.isoenuk
dc.subjectmicrocrystalsuk
dc.subjectsize effectsuk
dc.subjectRaman scatteringuk
dc.subjectANNNI modeluk
dc.titleThe effect of size factor on the phase transition in Sn2P2S6 crystals: experimental data and simulation in ANNNI modeluk
dc.typeTextuk
dc.pubTypeСтаттяuk
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