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用于软X射线光束线的作为束流强度监测器的薄导电金刚石薄膜。

Thin conductive diamond films as beam intensity monitors for soft x-ray beamlines.

作者信息

Kummer K, Fondacaro A, Yakhou-Harris F, Sessi V, Pobedinskas P, Janssens S D, Haenen K, Williams O A, Hees J, Brookes N B

机构信息

European Synchrotron Radiation Facility, 6 Rue Jules Horowitz, BP 220, F-38043 Grenoble Cedex, France.

出版信息

Rev Sci Instrum. 2013 Mar;84(3):035105. doi: 10.1063/1.4794439.

Abstract

Quantitative analysis of X-ray absorption and dichroism data requires knowledge of the beamline photon flux during the measurements. We show that thin conductive (B-doped) diamond thin films can be an alternative to the widely used gold meshes for monitoring the beam intensity of soft X-ray beamlines in situ. Limited by the carbon extended x-ray absorption fine structure oscillations, the diamond films become applicable beginning from about 600 eV photon energy, where the important transition metal edges and the rare-earth edges are found. The 100 nm and 250 nm thick free-standing diamond films were grown and tested against standard gold meshes in real-life dichroism experiments performed at beamline ID08 of the European Synchrotron Radiation Facility, Grenoble, France. Quantitative agreement was found between the two experimental data sets. The films feature an extremely high transmission of about 90% and, at the same time, yield a sufficiently strong and clean reference signal. Furthermore, the thin films do not affect the shape of the transmitted beam. X-rays passing mesh-type monitors are subject to diffraction effects, which widen the beam and become particularly disturbing for small beamsizes in the micrometer range.

摘要

对X射线吸收和二色性数据进行定量分析需要在测量过程中了解束线光子通量。我们表明,薄导电(硼掺杂)金刚石薄膜可替代广泛使用的金网,用于原位监测软X射线束线的束强度。受碳扩展X射线吸收精细结构振荡的限制,金刚石薄膜从约600 eV光子能量开始适用,在该能量处可找到重要的过渡金属边缘和稀土边缘。在法国格勒诺布尔欧洲同步辐射装置的ID08束线进行的实际二色性实验中,生长了100 nm和250 nm厚的自支撑金刚石薄膜,并与标准金网进行了测试。在两个实验数据集之间发现了定量一致性。这些薄膜具有约90%的极高透射率,同时产生足够强且干净的参考信号。此外,薄膜不会影响透射光束的形状。通过网格型监测器的X射线会受到衍射效应的影响,这会使光束变宽,对于微米范围内的小光束尺寸尤其令人困扰。

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