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Low-frequency dielectric dispersion and magnetic properties of La,Gd modified Pb(Fe1/2Ta1/2)O3 multiferroics
Authors:R.N.P. Choudhury,C. Rodrí  guez,P. Bhattacharya,R.S. Katiyar,C. Rinaldi
Affiliation:1. Department of Physics, P.O. Box 23343, University of Puerto Rico, San Juan-00931, Puerto Rico;2. Department of Chemical Engineering, University of Puerto Rico, Mayagüez, P.O. Box 9046, Mayagüez, Puerto Rico 00681, Puerto Rico
Abstract:Pb(Fe1/2Ta1/2)O3 (PFT) modified by rare-earth (La and Gd) ions has been synthesized in a single phase using a double-stage synthesis (i.e., Columbite) technique. Scanning electron micrographs (SEM) of the pellet samples have shown a significant change in their grain size and uniform distribution of Gd/La at the Fe-sites. The room temperature X-ray structural analysis shows that the reported cubic (or tetragonal) structure of PFT has been distorted to a monoclinic system on substitution of La/Gd at the Fe-site. Detailed studies of dielectric properties of the above compound on La/Gd substitution have shown strong dielectric dispersion at low frequency (i.e. relaxor behavior) with drastic change in transition temperature. Magnetic characterization shows that though the PFT sample displays an antiferromagnetic transition at ∼150 K, the rare-earth ions-substituted samples do not. Furthermore, temperature dependence of magnetization measurements shows that spin glass transition observed in PFT at low temperatures (5–20 K) does not exist in the La and Gd substituted PFT. Doping of Gd in PFT increases the sample magnetization, especially at low temperature.
Keywords:Multiferroics   Magnetization   Dielectrics dispersion   X-ray diffraction
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