Second-order phase transition with coexistence of short-range and long-range ferromagnetic interactions in Ba1.7La0.3FeMoO6 compound

In this work, the magnetic properties and critical behavior around ferromagnetic–paramagnetic (FM–PM) phase transition in Ba1.7La0.3FeMoO6 compound have been investigated in detail. This compound exhibits a second-order magnetic phase transition with Curie temperature TC = 345 K. The critical expone...

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Veröffentlicht in:Current applied physics 2014, 14(6), , pp.886-891
Hauptverfasser: Thanh, Tran Dang, Oh, Suhk-Kun, Kim, Dong-Hyun, Yu, Seong-Cho, Demyanov, S.E., Kalanda, N.A., Yarmolich, M.V., Kovalev, L.V.
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Sprache:eng
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Zusammenfassung:In this work, the magnetic properties and critical behavior around ferromagnetic–paramagnetic (FM–PM) phase transition in Ba1.7La0.3FeMoO6 compound have been investigated in detail. This compound exhibits a second-order magnetic phase transition with Curie temperature TC = 345 K. The critical exponents β, γ, and δ that are determined by using the modified Arrott plots (MAP), the Kouvel–Fisher (KF) and the critical isotherm analysis agree very well. Our results indicate a coexistence of short-range and long-range ferromagnetic (FM) interactions in Ba1.7La0.3FeMoO6 compound. The existence of long-range FM interactions in this compound can be associated with the crystal structure of materials with long-range Fe/Mo ordering parameter and strength of double-exchange interaction, whereas the existence of the short-range FM interactions can be explained by magnetic inhomogeneity and FM clusters.
ISSN:1567-1739
1878-1675
DOI:10.1016/j.cap.2014.03.019