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Sagittal focusing inducing energy structure in medium to high-energy resolution X-ray monochromators

机译:矢状聚焦在培养基中诱导能量结构到高能分辨率X射线单色器

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Sagittal focusing is a widely used geometry to horizontally focus X-rays in synchrotron beamlines. Usually, two types of devices are used: toroidal mirrors combined with flat X-ray monochromators or flat mirrors combined with sagittal focusing monochromators. The former option seems to be better since the stresses caused by the bending of the second crystal in a double crystal monochromator (DCM) are avoided. In this work we explore the effect of sagittal focusing in medium to high energy resolution X-ray monochromators. Our studies are based on a theoretical explanation of experimental data acquired in two different experiments performed at the XRD2 beamline at Laboratorio Nacional de Luz Sincrotron (LNLS / Brazilian Synchrotron) and X18A at the National Synchrotron Light Source (NSLS / BNL / USA). The first experiment was carried out with a flat meridional bendable mirror followed by a DCM with the second crystal being sagitally bent. The second experiment was carried out with a flat Si 111 DCM followed by a toroidal, but meridional bendable mirror. Both setups are completed by a Si 551 4-bounce monochromator to scan the energy spectrum around 13.7 keV and 13.9 keV, respectively. The results show that the sagittal curvature induces an energy structure. Theoretical studies made by analyzing the reflecting angles in the mirror surface joined with the dynamical theory of X-ray diffraction in the 4-bounce X-ray monochromators confirm these results, which are also explored by the DuMond diagram.
机译:矢状聚焦是一种广泛使用的几何形状,可以在同步射线线上水平聚焦X射线。通常,使用两种类型的设备:环形镜与平坦的X射线单色器或平面镜结合与矢状聚焦单色器。由于避免了由双晶单色仪(DCM)中的第二晶体的弯曲引起的应力似乎更好,因此似乎更好。在这项工作中,我们探讨了矢状聚焦在培养基中的效果到高能量分辨率X射线单色剂。我们的研究基于在国内同步光源(NSLS / BNL / USA)在Laboratorio Nacional de Luz Sincroctron(LNL / Brazilian Synchrotron)和X18a在XRD2梁线上进行的两种不同实验中获取的实验数据的理论解释。第一个实验用扁平的子化可弯曲镜进行,然后具有第二晶体的DCM,被奇迹弯曲。第二实验用扁平Si 111 DCM进行,然后是环形,而是经络弯曲镜。两个设置都由Si 551 4-Bounce单色器完成,以分别扫描约13.7keV和13.9keV的能谱。结果表明矢状曲率诱导能量结构。通过分析与4-反冲X射线单色器中的X射线衍射动力学的镜面中的反射角度进行的理论研究,确认了这些结果,该结果也被难道图探索。

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