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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Development of confocal X-ray fluorescence (XRF) microscopy at the Cornell high energy synchrotron source
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Development of confocal X-ray fluorescence (XRF) microscopy at the Cornell high energy synchrotron source

机译:在康奈尔大学高能同步加速器源上开发共聚焦X射线荧光(XRF)显微镜

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摘要

A confocal X-ray fluorescence microscope was built at the Cornell High Energy Synchrotron Source (CHESS) to obtain compositional depth profiles of historic paintings. The microscope consists of a single-bounce, borosilicate monocapillary optic to focus the incident beam onto the painting and a commercial borosilicate polycapillary lens to collect the fluorescent X-rays. The resolution of the microscope was measured by scanning a variety of thin metal films through this confocal volume while monitoring the fluorescence signal. The capabilities of the technique were then probed using test paint microstructures with up to four distinct layers, each having a thickness in the range of 10-80 microns. Results from confocal XRF were compared with those from stand-alone XRF and visible light microscopy of the paint cross-sections. A large area, high-resolution scanner is currently being built to perform 3D scans on moderately sized paintings.
机译:在康奈尔高能同步加速器源(CHESS)上建立了共聚焦X射线荧光显微镜,以获取历史绘画的成分深度分布。显微镜由单反射硼硅酸盐单毛细管光学器件(用于将入射光束聚焦到油漆上)和商用硼硅酸盐多毛细管透镜(用于收集荧光X射线)组成。显微镜的分辨率是通过在此共聚焦体积中扫描各种金属薄膜同时监测荧光信号来测量的。然后,使用具有多达四个不同层的测试涂料微结构来探测该技术的功能,每个层的厚度在10-80微米范围内。将共焦XRF的结果与独立XRF的结果以及油漆横截面的可见光显微镜相比较。当前正在构建一个大面积的高分辨率扫描仪,以对中等大小的绘画进行3D扫描。

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