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采用双相板配置的共振 X 射线衍射的线性偏振扫描。

Linear polarization scans for resonant X-ray diffraction with a double-phase-plate configuration.

机构信息

European Synchrotron Radiation Facility, Grenoble, France.

出版信息

J Synchrotron Radiat. 2009 Nov;16(Pt 6):778-87. doi: 10.1107/S0909049509035006. Epub 2009 Sep 29.

Abstract

An in-vacuum double-phase-plate diffractometer for performing polarization scans combined with resonant X-ray diffraction experiments is presented. The use of two phase plates enables the correction of some of the aberration effects owing to the divergence of the beam and its energy spread. A higher rate of rotated polarization is thus obtained in comparison with a system with only a single retarder. Consequently, thinner phase plates can be used to obtain the required rotated polarization rate. These results are particularly interesting for applications at low energy (e.g. 4 keV) where the absorption owing to the phase plate(s) plays a key role in the feasibility of these experiments. Measurements by means of polarization scans at the uranium M(4) edge on UO(2) enable the contributions of the magnetic and quadrupole ordering in the material to be disentangled.

摘要

介绍了一种用于进行偏振扫描的真空双相位板衍射仪,该衍射仪结合了共振 X 射线衍射实验。使用两个相位板可以校正由于光束的发散和能量展宽引起的一些像差效应。与只有单个延迟器的系统相比,因此可以获得更高的旋转偏振率。因此,可以使用更薄的相位板来获得所需的旋转偏振率。这些结果对于在低能量(例如 4keV)下的应用特别有趣,因为相位板的吸收在这些实验的可行性中起着关键作用。在 UO2 上铀 M(4)边缘进行的偏振扫描测量使得可以解耦材料中磁有序和四极有序的贡献。

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