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Monte Carlo simulation of Kerr effect and giant magnetoresistance in CoxAg((1-x)) granular films

机译:CoxAg((1-x))颗粒薄膜的Kerr效应和巨磁阻的Monte Carlo模拟

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Based on the Monte Carlo simulation, we present the theoretical calculation of the Kerr loops and giant magnetoresistance (GMR) curves in CoxAg(1-x) granular films. The calculated results of both the Kerr loops and the GMR curves are in good agreement with the experimental ones. The anisotropy energy and the dipolar interaction evidently influence the Kerr loops and the GMR effect and it is found that with the increasing Co content X, the value of anisotropy constant K decreases and the value of dipolar interaction constant D increases. The values of K-t for the CoxAg(1-x) granular films are calculated, which plays an important role in explaining the GMR effect of the granular films. Here K-t is a parameter related to the resistivity at zero field and to the scattering parameter constant.
机译:基于蒙特卡洛模拟,我们提出了CoxAg(1-x)颗粒薄膜中Kerr环和巨磁阻(GMR)曲线的理论计算。 Kerr环和GMR曲线的计算结果与实验结果吻合良好。各向异性能和偶极相互作用明显影响克尔环和GMR效应,发现随着Co含量X的增加,各向异性常数K的值减小,偶极相互作用常数D的值增大。计算了CoxAg(1-x)颗粒薄膜的K-t值,这在解释颗粒薄膜的GMR效应中起着重要作用。在此,K-t是与零场的电阻率以及散射参数常数有关的参数。

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