Transport and magnetoresistance studies on polycrystalline La0.4Dy0.1Ca0.5MnO3: Role of phase separation

被引:63
|
作者
Krichene, A. [1 ]
Boujelben, W. [1 ]
Mukherjee, S. [2 ]
Solanki, P. S. [3 ]
Shah, N. A. [3 ]
机构
[1] Univ Sfax, Fac Sci Sfax, Lab Phys Mat, BP 1171, Sfax 3000, Tunisia
[2] UGC DAE Consortium Sci Res, Mumbai Ctr, BARC Campus, Bombay 400085, Maharashtra, India
[3] Saurashtra Univ, Dept Phys, Rajkot 360005, Gujarat, India
关键词
Manganite; Electrical resistivity; Magnetoresistance; Phase separation; MAGNETIC-FIELD; MAGNETOCALORIC PROPERTIES; MAGNETOTRANSPORT;
D O I
10.1016/j.actamat.2017.04.025
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Electrical and magnetoresistive response of phase-separated La0.4Dy0.1Ca0.5MnO3 polycrystalline bulk sample has been investigated. The magnetic structure below 25 K is identified as a coexistence of ferromagnetic, strong antiferromagnetic and weak metastable antiferromagnetic domains. The irreversibility in the electrical resistivity with magnetic field cycling is associated to the training effect. The resistivity in the metallic range for mu H-0 <= 4 T follows Zener polynomial law with unusual values of n exponent due to the high spin fluctuations. Temperature dependence of magnetoresistance (MR) exhibits a plateau-like shape for mu H-0 <= 2 T. For MR(T), maximum MR- 98.8% under 2 T field at 77 K and for MR(H), MR is about 90.5% under 1 T magnetic field at 75 K has been recorded. The colossal values of MR suggest the possibility of using our sample for technological applications. An enhancement of MR(H) at 75 K was observed in the field range 0-2 T due to magnetic field cycling. The spectacular behavior of resistivity for La0.4Dy0.1Ca0.5MnO3 sample is essentially attributed to phase separation phenomenon. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:491 / 498
页数:8
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