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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Magnetoresistance of an all-manganite spin valve: A thin antiferromagnetic insulator sandwiched between two ferromagnetic metallic electrodes
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Magnetoresistance of an all-manganite spin valve: A thin antiferromagnetic insulator sandwiched between two ferromagnetic metallic electrodes

机译:全锰自旋阀的磁阻:薄的反铁磁绝缘体,夹在两个铁磁金属电极之间

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摘要

We study the magnetic and transport properties of an all-manganite spin valve consisting of a thin antiferromagnetic and insulating manganite sandwiched between two ferromagnetic and metallic manganite electrodes. When the ferromagnetic electrodes are in a parallel configuration, the double-exchange mechanism in the middle manganite slab is enhanced and the whole heterostructure becomes metallic. In the antiparallel alignment of the electrodes, the antiferromagnetic order in the middle layer is more robust and the resistance of the heterostructure is larger than in the parallel configuration. The strong dependence of the electronic structure of the middle manganite on the relative orientation of the magnetization in the leads turns out in a large tunneling magnetoresistance. We also find that the application of a magnetic field to the heterostructure in the parallel metallic configuration increases the electrical conductance, producing a large magnetoresistance. We discuss our conclusions in the context of recent experiments performed in manganite heterostructures.
机译:我们研究了一种全锰旋转阀的磁性和传输特性,该旋转阀由夹在两个铁磁和金属锰电极之间的薄反铁磁和绝缘锰组成。当铁磁电极为平行结构时,中锰矿板中的双重交换机制增强,整个异质结构变成金属。在电极的反平行排列中,中间层中的反铁磁顺序更加牢固,并且异质结构的电阻比平行配置中的电阻大。结果表明,在大的隧道磁阻中,中锰铁矿的电子结构强烈依赖于引线中磁化的相对取向。我们还发现,在平行金属构型中向异质结构施加磁场会增加电导率,从而产生较大的磁阻。我们将在锰异质结构最新实验的背景下讨论我们的结论。

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