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High energy ion beam irradiation of Co NiFe Co Cu multilayers Effects on the structural, transport and magnetic properties

机译:Co NiFe Co Cu多层膜的高能离子束辐照对结构,传输和磁性的影响

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摘要

The aim of this work is to investigate the effects of 593 MeVAu irradiation using two different projectile charges, namely Au30 and Au46.3 on the structural, transport and magnetization properties of Co NiFe Co Cu multilayers. X Ray diffraction and extended X ray absorption fine structures measurements show no significant structural change for as deposited and irradiated multilayers. On the other hand, the magnetoresistance amplitude decreases with the ion fluence but it is insensitive to the projectile charge state. The correlation between changes in the magnetoresistance and remanent magnetization suggests that the main effect responsible for the decrease of the magnetoresistance is the creation of ferromagnetic pinholes. These results are discussed on basis of the electronic thermal spike model and nuclear cascades theory and show similarities to the effects observed at low energy ion beam irradiation
机译:这项工作的目的是研究使用两种不同的抛射电荷Au30和Au46.3进行的593 MeVAu辐照对Co NiFe Co Cu多层膜的结构,传输和磁化性能的影响。 X射线衍射和扩展的X射线吸收精细结构测量结果表明,沉积和辐照的多层没有明显的结构变化。另一方面,磁阻振幅随着离子通量而减小,但是对射弹电荷状态不敏感。磁阻变化与剩余磁化强度之间的相关性表明,造成磁阻减小的主要作用是产生铁磁针孔。在电子热尖峰模型和核级联理论的基础上讨论了这些结果,并显示了与在低能离子束辐照下观察到的效应相似的结果。

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