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首页> 外文期刊>Journal of synchrotron radiation >Metrology characterization of ultraprecise bendable mirrors for the European XFEL: from offsite calibration to installation and commissioning
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Metrology characterization of ultraprecise bendable mirrors for the European XFEL: from offsite calibration to installation and commissioning

机译:欧式XFEL超超挑镜子的计量表征:从现场校准到安装和调试

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摘要

The European XFEL requires long and ultraflat X-ray mirrors of high precision for the beam offset and distribution system [Altarelli et al. (2006), XFEL Technical Design Report, DESY 2006-097. DESY, Hamburg, Germany]. A general specification of the beam transport mirrors is a length of up to 950mm and an optical surface with a deviation from a perfectly flat surface of <30nmpeak-to-valley and a figure error of <2nm peak-to-valley. From a production point of view, such a mirror cannot be easily fabricated so, in each beamline, it is foreseen to have at least one mirror with bending capabilities. In this way, it is possible to correct the residual divergence of the beam in order to focus it in the correct position with high accuracy and repeatability. This is practically implemented using a mechanical bender in which the mirror is mounted and bent through a motorized actuator. One such system was characterized in the metrology lab using a large-aperture Fizeau interferometer and a capacitive sensor. It was then installed in the beamline and calibrated again using the X-ray beam. Here, the procedure is described and the two different methods are compared, stressing the differences and the possible explanations and improvements.
机译:欧洲XFEL需要高精度的梁偏移和分配系统的长而超大X射线镜[Altarelli等人。 (2006年),XFEL技术设计报告,缺课2006-097。斯瓦里,汉堡,德国]。光束传送镜的一般规格是高达950mm的长度,并且光学表面与<30nmpeak-to-valley的完全平坦的表面偏差,以及<2nm峰到谷的图形误差。从生产的角度来看,这种镜子不能轻易制造,因此,在每个光束线中,预见到至少一面具有弯曲能力的镜子。以这种方式,可以校正光束的剩余发散,以便以高精度和重复性聚焦在正确的位置。这实际上是使用机械弯曲的机械弯曲,其中镜子被安装并弯曲通过电动致动器。使用大孔径外径干涉仪和电容传感器的计量实验室的特征在于一种这样的系统。然后将其安装在光束线中并使用X射线束再次校准。这里,描述该过程,并比较两种不同的方法,强调差异和可能的解释和改进。

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