Scholl A, Liberati M, Arenholz E, Ohldag H, Stöhr J
Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev Lett. 2004 Jun 18;92(24):247201. doi: 10.1103/PhysRevLett.92.247201. Epub 2004 Jun 14.
We present evidence for the creation of an exchange spring in an antiferromagnet due to exchange coupling to a ferromagnet. X-ray magnetic linear dichroism spectroscopy on single crystal Co/NiO(001) shows that a partial domain wall is wound up at the surface of the antiferromagnet when the adjacent ferromagnet is rotated by a magnetic field. We determine the interface exchange stiffness and the antiferromagnetic domain wall energy from the field dependence of the direction of the antiferromagnetic axis, the antiferromagnetic pendant to a ferromagnetic hysteresis loop. The existence of a planar antiferromagnetic domain wall, proven by our measurement, is a key assumption of most exchange bias models.
我们展示了由于与铁磁体的交换耦合而在反铁磁体中产生交换弹簧的证据。对单晶Co/NiO(001)进行的X射线磁线性二色光谱表明,当相邻的铁磁体通过磁场旋转时,反铁磁体表面会缠绕一个部分畴壁。我们从反铁磁轴方向的场依赖性(反铁磁体对应于铁磁滞回线)确定了界面交换刚度和反铁磁畴壁能量。我们测量所证实的平面反铁磁畴壁的存在是大多数交换偏置模型的关键假设。