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Mixed spin-1 and spin-3/2 Ising system with two alternative layers of a honeycomb lattice within the effective-field theory

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dc.contributor.author Deviren, Bayram
dc.contributor.author Akbudak, Salih
dc.contributor.author Keskin, Mustafa
dc.date.accessioned 2022-04-07T13:04:27Z
dc.date.available 2022-04-07T13:04:27Z
dc.date.issued 2011
dc.identifier.issn 0038-1098
dc.identifier.uri http://dspace.adiyaman.edu.tr:8080/xmlui/handle/20.500.12414/2751
dc.description.abstract An effective-field theory with correlations is developed for a mixed spin-1 and spin-3/2 Ising system with two alternative layers of a honeycomb lattice. Spin-1 atoms and spin-3/2 atoms are distributed in alternative layers of a honeycomb lattice. We consider that the nearest-neighbor spins of each layer are coupled ferromagnetically and the interaction between the vertically aligned spins and adjacent spins are coupled either ferromagnetically or antiferromagnetically depending on the sign of the bilinear exchange interactions. We investigate the temperature dependence of the total magnetization to find the compensation points and to determine the type of compensation behavior. We present the phase diagrams in different planes for h = 0, and the phase diagrams contain the paramagnetic, nonmagnetic and ferrimagnetic phases. The system also presents a tricritical behavior besides multicritical point (A), isolated critical point (C) and double critical end point (B) depending on the interaction parameters. (C) 2010 Elsevier Ltd. All rights reserved. tr
dc.language.iso en tr
dc.publisher Pergamon-Elsevier Science Ltd tr
dc.subject Magnetic films and multilayers tr
dc.subject Phase transitions tr
dc.subject Ising model tr
dc.subject Effective-field theory tr
dc.title Mixed spin-1 and spin-3/2 Ising system with two alternative layers of a honeycomb lattice within the effective-field theory tr
dc.type Article tr
dc.contributor.authorID 0000-0003-3166-294X tr
dc.contributor.authorID 0000-0002-2483-2835 tr
dc.contributor.department Nevsehir Univ,/Dept Phys. tr
dc.contributor.department Adiyaman Univ,/Dept Phys. tr
dc.contributor.department Erciyes Univ,/Dept Phys. tr
dc.identifier.endpage 198 tr
dc.identifier.issue 3 tr
dc.identifier.startpage 193 tr
dc.identifier.volume 151 tr
dc.source.title Solid State Communications tr


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