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首页> 外文期刊>Journal of magnetism and magnetic materials >Enhancement of magnetoresistance and magnetocaloric effect at room temperature in poly crystalline Pr_(0.8-x)La_xSr_(0.2)MnO_3 (x = 0.2) compound
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Enhancement of magnetoresistance and magnetocaloric effect at room temperature in poly crystalline Pr_(0.8-x)La_xSr_(0.2)MnO_3 (x = 0.2) compound

机译:在聚结晶PR_(0.8-x)LA_XSR_(0.2)MNO_3(X = 0.2)化合物中的室温下的磁阻和磁热效应的增强

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摘要

The effect of chemical pressure on the ferromagnetic insulator ground state and its effect on magnetotransport and magnetocaloric properties has been explored in this study. Magnetic and magnetotransport measurements reveal that the increased chemical pressure in Pr0.6La0.2Sr0.2MnO3 due to the partial substitution by La in Pro(0.8)Sr(0.)(2)MnO(3) compound change the low-temperature insulator phase to the metallic phase. A room temperature enhancement of magnetoresistance (MR), as well as large relative cooling power (RCP), have been achieved with increasing chemical pressure in x = 0.2 compound. This enhancement of MR and magnetocaloric effect (MCE) in Pr(0.)(6)La(0.)(2)Sr(0.)(2)MnO(3)( )compound have been attributed to the short- range ferromagnetic cluster formation at higher temperature (T T-C).
机译:本研究探讨了化学压力对铁磁绝缘体地基的影响及其对磁性传输和磁热性质的影响。磁性和磁传输测量显示,由于La在Pro(0.8)Sr(0.)(2)MnO(3)化合物中的偏离La(0.)(2)MnO(3)化合物改变低温绝缘阶段,增加了PR0.6LA0.2SR0.2MNO3中的化学压力增加。到金属阶段。通过增加X = 0.2化合物的化学压力,已经实现了磁阻(MR)以及大的相对冷却功率(RCP)的室温增强。这种增强Pr(0.)(6)La(0.)(2)Sr(0.)(2)mnO(3)(3)(3)(3)(2)化合物已归因于短程的MR和磁热效应(MCE)增强较高温度(T> TC)处的铁磁性簇形成。

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  • 来源
    《Journal of magnetism and magnetic materials》 |2019年第11期|165443.1-165443.6|共6页
  • 作者单位

    HBNI Saha Inst Nucl Phys CMP Div 1 AF Bidhannagar Kolkata 700064 India|Univ Wurzburg D-97074 Wurzburg Germany;

    Seth Anandram Jaipuria Coll Dept Phys 10 Raja Naba Krishna St Kolkata 700005 India;

    HBNI Saha Inst Nucl Phys CMP Div 1 AF Bidhannagar Kolkata 700064 India;

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