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Low Field Magnetoristance and Inhomogenieties in La2/3Ca1/3MnO3 Films
Authors:J. Mustre de León  O. Arés  F. J. Espinosa  C. Hart  C. Martínez  S. Díaz
Affiliation:(1) Departamento de Física Aplicada, Cinvestav-Mérida, Carretera Antigua a Progreso Km. 6.5, A.P. 73, 97310, Mérida, Yucatán, Mexico;(2) Laboratorio de Superconductividad, IMRE, Universidad de la Habana, Vedado, 10400 Habana, Cuba;(3) Universidad Marista de Mérida, Periférico Norte Tablaje 13941, 97300, Mérida, Yucatán, Mexico
Abstract:La2/3Ca1/3MnO3 films were prepared using a conventional paint-on method on alumina and monocrystalline TiSrO3 substrates. A significant difference between the peak resistivity temperature T p=178 K and the magnetic transition temperature T c=240 K was found in contrast to single crystal samples. The behavior of the magnetoresistance with temperature also differs from that found in bulk samples. Although the films show significant granular morphology differences, their transport and magnetoresistive properties are very similar. Maximum magnetoresistance ratios of 16% and 10% at 0.3 T and 77 K were obtained for films deposited on alumina and TiSrO3 substrates, respectively. Magnetization measurements above T c show a nonlinear behavior, consistent with the presence of ferromagnetic inhomogeneities within the paramagnetic phase. These results suggest that, in addition to the importance of grain boundary scattering in determining the magnetoresistance at low fields, microscopic inhomogeneity plays a role in determining magnetotransport properties.
Keywords:Colossal magnetoresistance  Microscopic inhomogeneity  Intergrain effects
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