Schattschneider P, Rubino S, Hébert C, Rusz J, Kunes J, Novák P, Carlino E, Fabrizioli M, Panaccione G, Rossi G
Service Centre for Transmission Electron Microscopy, Wiedner Hauptstrasse 8-10/052, and Institut für Festkörperphysik, Wiedner Hauptstrasse 8-10/138, Technische Universität Wien, A-1040 Wien, Austria.
Nature. 2006 May 25;441(7092):486-8. doi: 10.1038/nature04778.
A material is said to exhibit dichroism if its photon absorption spectrum depends on the polarization of the incident radiation. In the case of X-ray magnetic circular dichroism (XMCD), the absorption cross-section of a ferromagnet or a paramagnet in a magnetic field changes when the helicity of a circularly polarized photon is reversed relative to the magnetization direction. Although similarities between X-ray absorption and electron energy-loss spectroscopy in a transmission electron microscope (TEM) have long been recognized, it has been assumed that extending such equivalence to circular dichroism would require the electron beam in the TEM to be spin-polarized. Recently, it was argued on theoretical grounds that this assumption is probably wrong. Here we report the direct experimental detection of magnetic circular dichroism in a TEM. We compare our measurements of electron energy-loss magnetic chiral dichroism (EMCD) with XMCD spectra obtained from the same specimen that, together with theoretical calculations, show that chiral atomic transitions in a specimen are accessible with inelastic electron scattering under particular scattering conditions. This finding could have important consequences for the study of magnetism on the nanometre and subnanometre scales, as EMCD offers the potential for such spatial resolution down to the nanometre scale while providing depth information--in contrast to X-ray methods, which are mainly surface-sensitive.
如果一种材料的光子吸收光谱取决于入射辐射的偏振,则称该材料具有二向色性。在X射线磁圆二色性(XMCD)的情况下,当圆偏振光子的螺旋度相对于磁化方向反转时,处于磁场中的铁磁体或顺磁体的吸收截面会发生变化。尽管人们早就认识到X射线吸收与透射电子显微镜(TEM)中的电子能量损失谱之间存在相似性,但一直认为将这种等效性扩展到圆二色性需要TEM中的电子束是自旋极化的。最近,基于理论依据有人认为这个假设可能是错误的。在此我们报告了在TEM中对磁圆二色性的直接实验检测。我们将电子能量损失磁手性二色性(EMCD)的测量结果与从同一标本获得的XMCD光谱进行比较,这些结果与理论计算一起表明,在特定散射条件下,通过非弹性电子散射可以探测标本中的手性原子跃迁。这一发现可能对纳米和亚纳米尺度的磁性研究产生重要影响,因为与主要对表面敏感的X射线方法不同,EMCD具有实现低至纳米尺度的空间分辨率并提供深度信息的潜力。