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B-site disorder driven multiple-magnetic phases: Griffiths phase, re-entrant cluster glass, and exchange bias in Pr2CoFeO6

dc.contributor.authorPal A.; Singh P.; Gangwar V.K.; Ghosh S.; Prakash P.; Saha S.K.; Das A.; Kumar M.; Ghosh A.K.; Chatterjee S.
dc.date.accessioned2025-05-24T09:40:12Z
dc.description.abstractThe magnetic spin ordering and the magnetization dynamics of a double perovskite Pr2CoFeO6 have been investigated by employing the (dc and ac) magnetization and neutron powder diffraction techniques. The study revealed that Pr2CoFeO6 adopted a B-site disordered orthorhombic structure (Pnma). Furthermore, ab initio band structure calculations suggested an insulating antiferromagnetic ground state. Magnetization measurements revealed that the system possesses a spectrum of competing magnetic phases, viz., long range canted antiferromagnetic (AFM) spin ordering (TN ∼269 K), Griffiths-like phase, re-entrant cluster glass (TG ∼34 K), and exchange bias effects. The neutron diffraction study divulged the exhibition of a long range G-type of canted AFM spin ordering. The random nonmagnetic dilution of magnetic Fe3+ (high spin) ions by Co3+ (low spin) ions due to B-site disorder essentially played a crucial role in manifesting such magnetic properties of the system. © 2019 Author(s).
dc.identifier.doihttps://doi.org/10.1063/1.5094905
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/18928
dc.relation.ispartofseriesApplied Physics Letters
dc.titleB-site disorder driven multiple-magnetic phases: Griffiths phase, re-entrant cluster glass, and exchange bias in Pr2CoFeO6

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