Japan Atomic Energy Agency, 1-1-1 Kouto, Sayo-cho, Sayo-gun, Hyogo 679-5148, Japan.
J Synchrotron Radiat. 2012 Mar;19(Pt 2):198-204. doi: 10.1107/S0909049511049958. Epub 2012 Jan 5.
Energy-domain grazing-incidence (57)Fe-Mössbauer spectroscopy (E-GIMS) with synchrotron radiation (SR) has been developed to study surface and interface structures of thin films. Highly brilliant (57)Fe-Mössbauer radiation, filtered from SR by a (57)FeBO(3) single-crystal nuclear Bragg monochromator, allows conventional Mössbauer spectroscopy to be performed for dilute (57)Fe in a mirror-like film in any bunch-mode operation of SR. A theoretical and experimental study of the specular reflections from isotope-enriched ((57)Fe: 95%) and natural-abundance ((57)Fe: ∼2%) iron thin films has been carried out to clarify the basic features of the coherent interference between electronic and nuclear resonant scattering of (57)Fe-Mössbauer radiation in thin films. Moreover, a new surface- and interface-sensitive method has been developed by the combination of SR-based E-GIMS and the (57)Fe-probe layer technique, which enables us to probe interfacial complex magnetic structures in thin films with atomic-scale depth resolution.
利用同步辐射(SR)进行能量域掠入射(57)Fe-Mössbauer 光谱学(E-GIMS)的研究已经发展起来,用于研究薄膜的表面和界面结构。高度明亮的(57)Fe-Mössbauer 辐射,通过(57)FeBO(3)单晶核布拉格单色器从 SR 中过滤出来,允许在 SR 的任何聚束模式操作中对镜状薄膜中稀有的(57)Fe 进行常规的 Mössbauer 光谱学研究。对同位素富集((57)Fe:95%)和自然丰度((57)Fe:∼2%)铁薄膜的镜面反射进行了理论和实验研究,以澄清薄膜中(57)Fe-Mössbauer 辐射的电子和核共振散射之间相干干涉的基本特征。此外,通过将基于 SR 的 E-GIMS 与(57)Fe 探针层技术相结合,开发了一种新的表面和界面敏感方法,该方法使我们能够以原子级深度分辨率探测薄膜中的界面复杂磁结构。