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Oscillatory behavior of tunnel magnetoresistance in a magnetic tunnel junction with varying magnetic layer thickness

机译:磁性层厚度变化的磁性隧道结中隧道磁阻的振荡行为

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摘要

We theoretically study the dependence of the tunnel magnetoresistance (TMR) of an MgO-based magnetic tunnel junction (MTJ) on the thickness of the ferromagnetic (FM) layers. Our results show that the TMR ratio oscillates with the thickness of the FM layers. The amplitude of these oscillations is much greater than the one expected to occur in giant magnetoresistance devices. This is explained by the presence of the tunnel barrier, which reduces the number of propagating states, thus, limiting the effect of destructive interference and by the special nature of the △_1 band in Fe. Calculations taking interfacial roughness in the MTJ into account show that the oscillations are robust against disorder. They are expected to affect the TMR ratio of experimental MTJ where one of the ferromagnetic electrodes has a thickness less than the diffusion length. We speculate that small variations in the FM electrode thickness could be related to the observed, but so far unexplained, oscillations of TMR with MgO thickness.
机译:我们从理论上研究了基于MgO的磁性隧道结(MTJ)的隧道磁阻(TMR)对铁磁(FM)层厚度的依赖性。我们的结果表明,TMR比随FM层的厚度而振荡。这些振荡的幅度远大于预期在巨磁阻器件中发生的振荡的幅度。这可以通过存在隧道势垒来解释,该势垒减少了传播状态的数量,从而限制了相消干扰的影响,并且通过Fe中的△_1波段的特殊性质来解释。将MTJ中的界面粗糙度考虑在内的计算结果表明,这种振荡具有很强的抗乱性。预期它们会影响实验MTJ的TMR比,其中铁磁电极之一的厚度小于扩散长度。我们推测,FM电极厚度的细微变化可能与观察到的有关,但到目前为止,无法解释的是,TMR随MgO厚度的振荡。

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