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Microcrystallography using single-bounce monocapillary optics

机译:使用单反射单毛细管光学器件的微晶学

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摘要

X-ray microbeams have become increasingly valuable in protein crystallography. A number of synchrotron beamlines worldwide have adapted to handling smaller and more challenging samples by providing a combination of high-precision sample-positioning hardware, special visible-light optics for sample visualization, and small-diameter X-ray beams with low background scatter. Most commonly, X-ray microbeams with diameters ranging from 50 µm to 1 µm are produced by Kirkpatrick and Baez mirrors in combination with defining apertures and scatter guards. A simple alternative based on single-bounce glass monocapillary X-ray optics is presented. The basic capillary design considerations are discussed and a practical and robust implementation that capitalizes on existing beamline hardware is presented. A design for mounting the capillary is presented which eliminates parasitic scattering and reduces deformations of the optic to a degree suitable for use on next-generation X-ray sources. Comparison of diffraction data statistics for microcrystals using microbeam and conventional aperture-collimated beam shows that capillary-focused beam can deliver significant improvement. Statistics also confirm that the annular beam profile produced by the capillary optic does not impact data quality in an observable way. Examples are given of new structures recently solved using this technology. Single-bounce monocapillary optics can offer an attractive alternative for retrofitting existing beamlines for microcrystallography.
机译:X射线微束在蛋白质晶体学中变得越来越有价值。通过提供高精度的样品定位硬件,用于样品可视化的特殊可见光光学器件以及具有低背景散射的小直径X射线束的组合,全球许多同步加速器光束线已适应于处理更小且更具挑战性的样品。最常见的是,柯克帕特里克(Kirkpatrick)和贝兹(Baez)反射镜结合限定的孔径和散射防护装置产生直径范围为50μm至1μm的X射线微束。提出了一种基于单反射玻璃单毛细管X射线光学器件的简单替代方案。讨论了基本的毛细管设计考虑因素,并提出了利用现有束线硬件的实用且可靠的实现方案。提出了一种用于安装毛细管的设计,该设计消除了寄生散射并将光学器件的变形减小到适合用于下一代X射线源的程度。比较使用微束和常规孔径准直光束的微晶的衍射数据统计数据,表明毛细管聚焦光束可以显着改善。统计数据还确认,毛细管光学器件产生的环形光束轮廓不会以可观察的方式影响数据质量。给出了使用该技术最近解决的新结构的示例。单反射单毛细管光学器件可以提供一种有吸引力的替代方案,用于为微晶体学改造现有的光束线。

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