Kuch Wolfgang, Chelaru Liviu I, Offi Francesco, Wang Jing, Kotsugi Masato, Kirschner Jürgen
Max-Planck-Institut für Mikrostrukturphysik, Weinberg 2, D-06120 Halle, Germany.
Phys Rev Lett. 2004 Jan 9;92(1):017201. doi: 10.1103/PhysRevLett.92.017201.
We present experimental evidence for a three-dimensional noncollinear antiferromagnetic spin structure in ultrathin single-crystalline fcc Fe50Mn50 layers using magnetic circular dichroism photoelectron emission microscopy and x-ray magnetic linear dichroism. Layer-resolved as-grown domain images of epitaxial trilayers grown on Cu(001) in which FeMn is sandwiched between ferromagnetic layers with different easy axes reveal the presence of antiferromagnetic spin components in the film plane and normal to the film plane. An FeMn spin structure with no collinear order in the film plane is consistent with the absence of x-ray magnetic linear dichroism in Fe L3 absorption in FeMn/Co bilayers.
我们利用磁圆二色性光电子发射显微镜和X射线磁线性二色性,给出了超薄单晶面心立方Fe50Mn50层中三维非共线反铁磁自旋结构的实验证据。在Cu(001)上生长的外延三层膜中,FeMn夹在具有不同易轴的铁磁层之间,对其生长态进行层分辨畴成像,揭示了薄膜平面内和垂直于薄膜平面存在反铁磁自旋分量。薄膜平面内不存在共线有序的FeMn自旋结构,这与FeMn/Co双层膜中Fe L3吸收不存在X射线磁线性二色性一致。