论文标题

在34-ID-C处结合LAUE衍射与Bragg相干衍射成像

Combining Laue diffraction with Bragg coherent diffraction imaging at 34-ID-C

论文作者

Pateras, Anastasios, Harder, Ross, Cha, Wonsuk, Gigax, Jonathan G., Baldwin, J. Kevin, Tischler, Jon, Xu, Ruqing, Liu, Wenjun, Erdmann, Mark J., Kalt, Robert, Sandberg, Richard L., Fensin, Saryu, Pokharel, Reeju

论文摘要

Bragg相干衍射成像(BCDI)中的测量方式依赖于从单个纳米级晶体对象中找到信号,该物体满足了大量任意定向的纳米晶体中的Bragg条件。但是,即使发现了带有(HKL)米勒指数的单个BRAGG反射的信号,但晶体的三维(3D)图像上的晶体学轴仍然未知,因此,在互惠空间中定位的其他bragg反射实际上是不可能的,或者需要晶体方向的良好知识。我们报告了高级光子源的34-ID-C端站的可移动双弹跳Si(111)单色器的调试,该电源源旨在将多反射BCDI作为单光束线仪器中的标准工具提供。新仪器通过快速切换单色转换为宽带(粉红色)光束,允许使用LAUE衍射来确定晶体方向。通过确定晶格的适当定向矩阵,可以在多个Bragg峰附近测量相干衍射,从而提供足够的信息来对3D中的完整应变张量进行成像。我们讨论了从同一纳米晶体的多种反射中对Bragg相干衍射数据进行自动测量的设计,操作的概念,开发的用于索引LAUE模式的程序。

Measurement modalities in Bragg coherent diffraction imaging (BCDI) rely on finding signal from a single nanoscale crystal object, which satisfies the Bragg condition among a large number of arbitrarily oriented nanocrystals. However, even when the signal from a single Bragg reflection with (hkl) Miller indices is found, the crystallographic axes on the retrieved three-dimensional (3D) image of the crystal remain unknown, and thus, localizing in reciprocal space other Bragg reflections becomes in reality impossible or requires good knowledge of the orientation of the crystal. We report the commissioning of a movable double-bounce Si (111) monochromator at the 34-ID-C end station of the Advanced Photon Source, which aims at delivering multi-reflection BCDI as a standard tool in a single beamline instrument. The new instrument enables this through rapid switching from monochromatic to broadband (pink) beam permitting the use of Laue diffraction to determine crystal orientation. With a proper orientation matrix determined for the lattice, one can measure coherent diffraction near multiple Bragg peaks, thus providing sufficient information to image the full strain tensor in 3D. We discuss the design, concept of operation, the developed procedures for indexing Laue patterns, and automated measuring of Bragg coherent diffraction data from multiple reflections of the same nanocrystal.

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