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Pr替代La5/8Ca3/8MnO3体系的磁性与电输运特性
引用本文:杨聚刚,敬超,曹桂新,杨勇,曹世勋,张金仓.Pr替代La5/8Ca3/8MnO3体系的磁性与电输运特性[J].上海大学学报(自然科学版),2006,12(5):505-511.
作者姓名:杨聚刚  敬超  曹桂新  杨勇  曹世勋  张金仓
作者单位:上海大学,理学院,上海,200444
基金项目:国家自然科学基金;上海市科委资助项目;上海市教委"曙光计划";上海市教委资助项目;上海市教委资助项目
摘    要:系统地研究了多晶La5/8-xPrxCa3/8MnO3(x=0,0.10,0.13,0.15)体系的磁性和电输运特性,并报道了这一体系的电阻率极小值行为.X射线粉末衍射测量表明,所有的样品都具有较好的单相结构;电输运和磁性测量结果表明,随掺杂量的增大,居里温度Tc和绝缘体-金属转变温度TMI都向低温区移动.在较低温度下电阻率表现出了极小值现象,而这一现象随外加磁场的增大逐渐受到抑制,对此现象从强电子-电子相互作用角度进行了分析讨论.在Tc和TMI转变温.度区域,样品表现出较大的磁电阻效应.样品在高温下的电输运行为可根据可变程跃迁机制得到很好的解释.

关 键 词:Pr替代  电输运与磁性  磁电阻
文章编号:1007-2861(2006)05-0505-07
修稿时间:2005年11月8日

Electrical Transport and Magnetic Properties of Pr-doping La5/8 Ca3/8MnO3 Perovsksite Manganese
YANG Ju-gang,JING Chao,CAO Gui-xin,YANG Yong,CAO Shi-xun,ZHANG Jin-cang.Electrical Transport and Magnetic Properties of Pr-doping La5/8 Ca3/8MnO3 Perovsksite Manganese[J].Journal of Shanghai University(Natural Science),2006,12(5):505-511.
Authors:YANG Ju-gang  JING Chao  CAO Gui-xin  YANG Yong  CAO Shi-xun  ZHANG Jin-cang
Abstract:In this paper,electrical transport and magnetic properties of polycrystalline La_(5/8-x)Pr_xCa_(3/8)MnO_3((x=0),0.10,0.13,0.15) are investigated systematically.Low temperature resistivity minima for La_(5/8-x)Pr_xCa_(3/8)MnO_3 systems are reported.X-ray powder diffraction measurement shows that all prepared samples have good single phases.Magnetic and electrical transport measurements indicate that both Curie point T_c and the metal-insulator transition T_(MI) shift to lower temperature with the increasing doping of Pr compositions,while the behavior of resistivity minima appears at low-temperature for all samples.Resistivity minima are depressed gradually with the increasing magnitude of applied magnetic field.This phenomenon is analyzed according to the enhanced electron-electron interactions.Meanwhile,a larger magneto-resistance(MR) arises in the region of transition temperature of T_(MI) and T_c.Electrical transport properties at higher temperature can be explained quite well based on the variable-range-hopping(VRH) theory.
Keywords:La5/8-xPrxCa3/8MnO3
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