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Reentrant double glassy states and simultaneous presence of short- and long-range ordering in metamagnetic Co-doped Bi0·5La0·5Fe0·5Mn0·5O3 multiferroic

dc.contributor.authorGupta P.K.; Anand K.; Alam M.; Ghosh S.; Kumari S.; Pal A.; Singh M.; Shukla K.K.; Tsung-Wen Yen P.; Huang S.-M.; Ghosh A.K.; Chatterjee S.
dc.date.accessioned2025-05-23T11:23:58Z
dc.description.abstractA study of the structural and magnetic properties of Bi0·5La0·5Fe0·45Co0·05Mn0·5O3 is presented in the article. We report the rare observations of two glassy transitions below the long-range ordering temperature along with the metamagnetic transitions at low temperatures. Frequency and DC field dependence of AC susceptibility and isothermal relaxation of remnant magnetization studies have all shown the slow spin dynamics for the compound. Interestingly, in the glass phase of the materials, metamagnetic transitions of the antiferromagnetic spins were found which indicate the coexistence of the long-range ordered phase along with the short-range ordered glassy phase. The double cluster glass phases can be comprehended, from the relaxations of the spin clusters arising from the competing magnetic interactions present in the system. Moreover, the roles of additional exchange interactions which are brought to the system by Co doping are also considered in explaining the observed double cluster glass transitions. © 2022 Elsevier Masson SAS
dc.identifier.doihttps://doi.org/10.1016/j.solidstatesciences.2022.106930
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/9557
dc.relation.ispartofseriesSolid State Sciences
dc.titleReentrant double glassy states and simultaneous presence of short- and long-range ordering in metamagnetic Co-doped Bi0·5La0·5Fe0·5Mn0·5O3 multiferroic

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