Morales R, Li Zhi-Pan, Olamit J, Liu Kai, Alameda J M, Schuller Ivan K
Physics Department, University of California-San Diego, La Jolla, California 92093, USA.
Phys Rev Lett. 2009 Mar 6;102(9):097201. doi: 10.1103/PhysRevLett.102.097201. Epub 2009 Mar 4.
The cooling field dependence of the exchange bias field in ferromagnet/antiferromagnet (FM/AF) multilayers demonstrates that the bulk AF spin structure plays a crucial role on the origin of exchange bias. FM/AF/FM trilayers were designed to eliminate any interlayer exchange coupling between the FM slabs. By choosing the magnetic cooling field, the AF is ordered below its Néel temperature with the FM layers fully saturated either parallel or antiparallel to each other. The significant difference in the exchange bias field between these two cooling configurations confirms that exchange bias cannot be a purely interfacial effect and that the bulk AF moments play a significant role in pinning the uncompensated spins at the AF/FM interface. This experiment also demonstrates that the mechanism responsible for coercivity enhancement has a different origin and is independent of the process that gives rise to exchange bias.
铁磁体/反铁磁体(FM/AF)多层膜中交换偏置场对冷却场的依赖性表明,体反铁磁自旋结构在交换偏置的起源中起着关键作用。设计FM/AF/FM三层膜以消除FM板之间的任何层间交换耦合。通过选择磁冷却场,反铁磁体在其奈尔温度以下有序排列,FM层彼此完全平行或反平行饱和。这两种冷却配置之间交换偏置场的显著差异证实,交换偏置不能是纯粹的界面效应,并且体反铁磁矩在固定AF/FM界面处未补偿的自旋方面起着重要作用。该实验还表明,导致矫顽力增强的机制有不同的起源,并且与产生交换偏置的过程无关。