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Giant magnetoresistance of repeated multilayers of Cu3Ni3 embedded in Cu(100)

机译:嵌入Cu(100)的Cu3Ni3的重复多层的巨磁电阻

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The resistivity and giant magnetoresistance (GMR) of(Cu3Ni3)(n) embedded in Cu(100), for n less than or equal to II, that originates from the electronic structure of these finite, yet otherwise perfect, systems is calculated for currents in the plane of the layers (CIP) by using the Kubo-Greenwood formula for semi-infinite systems and the fully relativistic, spin-polarized screened Korringa-Kohn-Rostoker method. We find that for this particular type of repeated structure the CIP resistivity decreases from about 6 to 2 mu Omega cm as the number of repeats increases from 2 to 11, and the CIP-GMR while starting out at 4% for n=2 goes up to 16% at n=11. [References: 12]
机译:当n小于或等于II时,嵌入Cu(100)中的(Cu3Ni3)(n)的电阻率和巨磁阻(GMR)源自于这些有限但又理想的系统的电子结构通过使用半无限系统的Kubo-Greenwood公式和完全相对论的自旋极化屏蔽Korringa-Kohn-Rostoker方法,在层平面(CIP)中进行测量。我们发现,对于这种特殊类型的重复结构,随着重复次数从2增加到11,CIP电阻率从大约6降低到2μOΩcm,并且当n = 2时以4%开始时CIP-GMR上升在n = 11时达到16%。 [参考:12]

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