Stoupin S, Ruff J P C, Krawczyk T, Finkelstein K D
Cornell High Energy Synchrotron Source, Cornell University, Ithaca, New York, USA.
Acta Crystallogr A Found Adv. 2018 Sep 1;74(Pt 5):567-577. doi: 10.1107/S2053273318009439.
The absolute X-ray reflectivity of chemically vapor-deposited (CVD) single-crystal diamond plates was measured in the Laue geometry in the double-crystal non-dispersive setting with an asymmetric Si beam-conditioner crystal. The measurements were supplemented by rocking-curve topography. The measured reflectivity curves are examined in the framework of the Darwin-Hamilton approach using a set of two independent parameters: the characteristic thickness of mosaic blocks and their average angular misorientation. Owing to strong extinction effects, the width of the reflectivity curves does not directly represent the average misorientation of the blocks. Two different sets of parameters were found for the 111 asymmetric reflection in the two different scattering configurations (beam compression and beam expansion). Analysis of the rocking-curve topographs shows that this discrepancy can be attributed to inhomogeneity of the diamond crystal microstructure.
在劳厄几何条件下,使用非对称硅光束调节器晶体,在双晶非色散设置中测量了化学气相沉积(CVD)单晶金刚石板的绝对X射线反射率。测量通过摇摆曲线形貌进行补充。使用一组两个独立参数:镶嵌块的特征厚度及其平均角取向偏差,在达尔文 - 汉密尔顿方法的框架内检查测量的反射率曲线。由于强烈的消光效应,反射率曲线的宽度并不直接代表块体的平均取向偏差。在两种不同的散射配置(光束压缩和光束扩展)中,对于111非对称反射发现了两组不同的参数。摇摆曲线形貌分析表明,这种差异可归因于金刚石晶体微观结构的不均匀性。