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Title: | Effect of frozen spin on the magnetocaloric property of La0.7Ca0.3CoO3 polycrystalline and single crystal samples |
Authors: | J.C. Debnath∗, R. Zeng, J.H. Kim, P. Shamba, D.P. Chen, S.X. Dou |
Issue Date: | 2012 |
Publisher: | ElSEVIER |
Abstract: | Polycrystalline (PC) and single crystalline (SC) samples of La0.7Ca0.3CoO3 (LCCO) with the perovskite structure were synthesized by conventional solid-state reaction and the floating-zone growth method. We conducted isothermal magnetization measurements of the PC and SC samples at temperatures from 2.8 K to 140 K, and evaluated the magnetic entropy change (− SM) under zero field cooling (ZFC) and field cooling (FC) to 2.8 K. An interesting result has been obtained, where the − SM–T curves in the low temperature range show totally different features between the ZFC and FC cooling procedures. The − SM shows a large inverse irreversibility value for the ZFC process, while the − SM also shows a normal positive value, but one that is slightly larger at 2.8 K for the FC process for both samples. We also present the results of a comprehensive investigation of the magnetic properties of the LCCO system. Systematic measurements have been conducted on DC magnetization, AC susceptibility, and exchange-bias. These findings suggest that complex structural phases, including ferromagnetic and spin-glass/cluster-spinglass (SG/CSG)) states and their transitions, exist in PC samples, while there is a much simpler magnetic phase regime in SC samples. It was also of interest to discover that the CSG induced a magnetic field memory effect and an exchange-bias-like effect. |
URI: | http://dspace.aiub.edu:8080/jspui/handle/123456789/2641 |
Appears in Collections: | Publication: Journal |
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