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Spin-Polarized Tunnelling Magnetoresistance Effects in La0.833K0.167MnO3/SrTiO3 Polycrystalline Perovskite Manganites
引用本文:吴坚,张世远,胡秀坤.Spin-Polarized Tunnelling Magnetoresistance Effects in La0.833K0.167MnO3/SrTiO3 Polycrystalline Perovskite Manganites[J].中国物理快报,2005,22(6):1507-1510.
作者姓名:吴坚  张世远  胡秀坤
作者单位:[1]NationalLaboratoryofSolidStateMicrostructuresandDepartmentofPhysics,NanjingUniversity,Nanjing210093//DepartmentofMathematicsandPhysics,HohaiUniversity,Nanjing210098 [2]NationalLaboratoryofSolidStateMicrostructuresandDepartmentofPhysics,NanjingUniversity,Nanjing210093
摘    要:A sample of La0.833K0.167MnO3-SrTiO3 (LKMO/STO) is fabricated by the sol-gel method. The microstructure,magnetic and transportation properties have been studied. X-ray diffraction patterns indicate that the structure of LKMO/STO is a homogeneous solid solution phase. The resistivity of LKMO/STO shows the insulator behaviour, which is different from La0.833K0.167MnO3 (LKMO) whose resistivity shows metal-insulator transition with decreasing temperature. The low-field (moH = 0.02 T) magnetoresistance decreases from 11% to 0.2% with the increasing temperature from 4 K‘to 220K for the LKMO/STO sample. The magnitude of magnetoresistance in a strong field (μoH = 5.5 T) almost increases linearly with decreasing temperature and reaches the maximum of 65% at the low temperature of 4.2K, which is much higher than that oE LKMO (40%). The enhanced low-field magnetoresistance effects are quantitatively explained by the spin-polarized tunnelling at grain boundaries.

关 键 词:自旋-偏振  隧道效应  磁致电阻  溶胶-凝胶体法  多晶微结构
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