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All-diamond optical assemblies for a beammultiplexing X-ray monochromator at the Linac Coherent Light Source

机译:用于直线加速器相干光源的光束多路复用X射线单色仪的全金刚石光学组件

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摘要

A double-crystal diamond (111) monochromator recently implemented at the Linac Coherent Light Source (LCLS) enables splitting of the primary X-ray beam into a pink (transmitted) and a monochromatic (reflected) branch. The first monochromator crystal, with a thickness of ~100 mm, provides sufficient X-ray transmittance to enable simultaneous operation of two beamlines. This article reports the design, fabrication and X-ray characterization of the first and second (300 μm-thick) crystals utilized in the monochromator and the optical assemblies holding these crystals. Each crystal plate has a region of about 5 × 2 mm with low defect concentration, sufficient for use in X-ray optics at the LCLS. The optical assemblies holding the crystals were designed to provide mounting on a rigid substrate and to minimize mounting-induced crystal strain. The induced strain was evaluated using double-crystal X-ray topography and was found to be small over the 5 × 2 mm working regions of the crystals.
机译:最近在直线加速器相干光源(LCLS)上实现的双晶菱形(111)单色仪可将主X射线束分成粉红色(透射)和单色(反射)分支。第一个单色仪晶体的厚度约为100毫米,可提供足够的X射线透射率,从而能够同时操作两条光束线。本文报道了单色仪中使用的第一个和第二个(厚度为300μm)晶体以及保留这些晶体的光学组件的设计,制造和X射线表征。每个晶体板的缺陷浓度约为5×2 mm,足以用于LCLS的X射线光学器件。固定晶体的光学组件设计用于在刚性基板上安装,并最大程度地减少安装引起的晶体应变。使用双晶X射线形貌评估了诱发应变,发现该应变在晶体的5×2 mm工作区域内较小。

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