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Spin glass behaviour and extrinsic origin of magnetodielectric effect in non-multiferroic La(2)NiMnO(6) nanoparticles
Authors:K Devi Chandrasekhar  A K Das  A Venimadhav
Affiliation:Department of Physics and Meteorology, Indian Institute of Technology, Kharagpur, West Bengal 721302, India. Cryogenic Engineering Centre, Indian Institute of Technology, Kharagpur, West Bengal 721302, India.
Abstract:
We report magnetization, dielectric and dc transport properties of La(2)NiMnO(6) nanoparticles. Both dc and ac magnetization measurements indicated a metastable magnetic behaviour with random ferromagnetic and antiferromagnetic interactions below 110 K; critical slow-down, memory and rejuvenation properties signify the spin glass nature. The dc resistivity shows a semiconducting nature but the temperature dependent magnetoresistance (MR) shows a peak at the spin glass transition. The colossal dielectric property and its frequency dependence were interpreted using the Maxwell-Wagner (MW) interfacial polarization model. Impedance analysis along with magnetodielectric (MD) and magnetoresistance (MR) indicates that the observed MD originates from the combined effect of MR and MW interfacial polarization.
Keywords:
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