论文标题

磁性隧道连接的离子光束修饰

Ion beam modification of magnetic tunnel junctions

论文作者

Teixeira, B. M. S., Timopheev, A. A., Caçoilo, N., Cuchet, L., Mondaud, J., Childress, J. R., Magalhães, S., Alves, E., Sobolev, N. A.

论文摘要

通过铁磁共振,振动样品磁力测定法和平面内隧道技术研究,研究了400 keV $ ar^+$离子辐照对平面磁化磁隧道连接(MTJ)堆栈的磁性和电气性能的影响。辐照引起的磁各向异性,耦合能和隧道磁磁性(TMR)的变化表现出对离子通量的相关依赖性,这使我们能够区分两个辐照方案。在低氟化方案中,保留了$φ<10^{14} cm^{ - 2} $,保留了具有正常运行的MTJ所需的参数:在饱和磁化磁化磁强; m_s $ $ m_s $ a的较小下降之后,FECOB自由层(FL)的各向异性受到弱调节。 TMR连续下降;层间交换耦合(IEC)和交换偏置(EB)略有下降。在高氟化方案中,$φ> 10^{14} cm^{ - 2} $,MTJ被启用了:FL各向异性的调节很强,由于$ M_S $的强烈减少,归因于$ M_S $,归因于fl和FL之间的高度互联界面的高度界面, EB和IEC也丢失了,这可能是由于组成合成抗fiferromagnet的层的混合所致。由于MGO屏障和MGO/FECOB界面的辐照引起的恶化,TMR消失了。我们证明,围绕FL的层在确定辐照引起的磁各向异性演变趋势方面起着决定性的作用,并且存在这种调节磁各向异性的调节窗口,同时不失去TMR或MTJ的磁性构型。

The impact of 400 keV $Ar^+$ ion irradiation on the magnetic and electrical properties of in-plane magnetized magnetic tunnel junction (MTJ) stacks was investigated by ferromagnetic resonance, vibrating sample magnetometry and current-in-plane tunneling techniques. The irradiation-induced changes of the magnetic anisotropy, coupling energies and tunnel magnetoresistance (TMR) exhibited a correlated dependence on the ion fluence, which allowed us to distinguish between two irradiation regimes. In the low-fluence regime, $Φ < 10^{14} cm^{-2}$, the parameters required for having a functioning MTJ were preserved: the anisotropy of the FeCoB free layer (FL) was weakly modulated following a small decrease in the saturation magnetization $M_S$; the TMR decreased continuously; the interlayer exchange coupling (IEC) and the exchange bias (EB) decreased slightly. In the high-fluence regime, $Φ > 10^{14} cm^{-2}$, the MTJ was rendered inoperative: the modulation of the FL anisotropy was strong, caused by a strong decrease in $M_S$, ascribed to a high degree of interface intermixing between the FL and the Ta capping; the EB and IEC were also lost, likely due to intermixing of the layers composing the synthetic antiferromagnet; and the TMR vanished due to the irradiation-induced deterioration of the MgO barrier and MgO/FeCoB interfaces. We demonstrate that the layers surrounding the FL play a decisive role in determining the trend of the magnetic anisotropy evolution resulting from the irradiation, and that an ion-fluence window exists where such a modulation of magnetic anisotropy can occur, while not losing the TMR or the magnetic configuration of the MTJ.

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