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Antiferromagnetic interlayer exchange coupling in ferromagnetic GaMnAs/GaAs:Be multilayers

机译:铁磁性游戏机/ GaAs中的反铁磁层间交换耦合:是多层

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The interlayer exchange coupling (IEC) in magnetic multilayers determines the spin orientation of individual magnetic layers comprising the system. The dependence of the resistance on the resulting spin configuration in turn leads to the phenomenon known as giant magnetoresistance (GMR). The GMR effect is of key importance to the area of spintronics, in which the spin degree of freedom is utilized in the operation of electronic devices. The behavior of IEC in metallic ferromagnetic multilayers has been extensively investigated, and the ability to control the IEC by structural parameters to be either ferromagnetic (FM) or antiferromagnetic (AFM) is now well established. In contrast, in multilayers consisting of FM semiconductors such as GaMnAs, the ability to change the IEC from FM to AFM is not well understood. Recently, however, AMF IEC was observed in GaMnAs/GaAs:Be multilayers. These systems, however, show somewhat different behavior from their metallic counterparts. Specifically, the IEC in the GaMnAs/GaAs:Be multilayer system is observed to be long range, typically of over 10 nm, so that not only interactions between nearest neighbor (NN) layers of the multilayer, but also between next-nearest-neighbor (NNN) layers are involved during the magnetization reversal process.
机译:磁性多层中的层间交换耦合(IEC)确定包括该系统的各个磁层的旋转方向。电阻对所得的旋转构型的依赖性导致称为巨磁阻(GMR)的现象。 GMR效应对熔融频体面积的关键重要,其中在电子设备的操作中使用自由度的自由度。 IEC在金属铁磁性多层的行为已经广泛研究,并且现在通过结构参数控制IEC是铁磁性(FM)或反铁磁(AFM)的能力。相比之下,在由FM半导体组成的多层,例如Gamnas,将IEC从FM改变为AFM的能力并不了解。然而,最近,在Gamnas / Gaas中观察到AMF IEC:是多层的。然而,这些系统从金属对应物中显示出稍微不同的行为。具体地,GAMNAS / GaAs中的IEC:是多层系统的长距离,通常为超过10nm,因此不仅是多层的最近邻居(Nn)层之间的相互作用,而且在下一个最近邻之间(NNN)在磁化反转过程中涉及层。

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