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首页> 外文期刊>Journal of synchrotron radiation >Energy-dispersive Laue diffraction by means of a pnCCD detector coupled to a CsI(Tl) scintillator using ultra-hard X-ray synchrotron radiation
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Energy-dispersive Laue diffraction by means of a pnCCD detector coupled to a CsI(Tl) scintillator using ultra-hard X-ray synchrotron radiation

机译:借助于使用超硬X射线同步辐射耦合到CSI(TL)闪烁体的PNCCD检测器的能量分散朗衍射

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摘要

The lattice parameters and unit-cell orientation of an SrLaAlO4 crystal have been determined by means of energy-dispersive X-ray Laue diffraction (EDLD) using a pnCCD detector coupled to a columnar structure CsI(Tl) scintillator in the energy range between 40 and 130keV. By exploiting the high quantum efficiency (QE) achieved by this combined detection system for hard X-rays, a large number of Bragg reflections could be recorded by the relatively small detector area, allowing accurate and fast determination of the lattice parameters and the moduli of the structure factors. The experiment was performed on the energy-dispersive diffraction (EDDI) beamline at the BESSY II synchrotron using a pnCCD detector with 128x128 pixels. Since the energies and positions of the Laue peaks can be recorded simultaneously by the pnCCD system, the tetragonal structure of the investigated specimen was determined without any prior information. The unit-cell parameters and the angles between the lattice vectors were evaluated with an accuracy of better than 0.7%, while the structure-factor moduli of the reflections were determined with a mean deviation of 2.5% relative to the theoretical values.
机译:SRLAO4晶体的晶格参数和单位细胞取向已经通过使用耦合到柱状结构CSI(TL)闪烁体的PNCCD检测器在40和40之间的能量 - 分散探测器中确定了SRLAALO4晶体的晶格参数和单元的定向。 130kev。通过利用该组合检测系统实现的高量子效率(QE)对于硬X射线,可以通过相对较小的检测器区域记录大量的布拉格反射,允许准确且快速地确定晶格参数和模态结构因素。使用具有128x128像素的PNCCD检测器对BESSY II同步探测器的能量分散衍射(EDDI)束线进行实验。由于Laue峰的能量和位置可以通过PNCCD系统同时记录,因此在没有任何先前信息的情况下确定研究的样本的四边形结构。单位细胞参数和晶格载体之间的角度被评价,精度优于0.7%,而相对于理论值的平均偏差为2.5%的平均偏差确定反射的结构因数模量。

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