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Development of confocal 3D micro-XRF spectrometer with dual Cr-Mo excitation

机译:双Cr-Mo激发共焦3D微型XRF光谱仪的研制

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A new 3D micro-XRF instrument based on a confocal setup using two independent polycapillary x-ray lenses and two x-ray sources (Cr and Mo targets) was developed. A full polycapillary x-ray lens was attached to each x-ray tube. Another half polycapillary lens was attached to a silicon drift x-ray detector (SDD). The focal spots of the three lenses were adjusted to a common position. The depth resolutions that were evaluated by use of a 10-mu m thick Au foil were approximately 90 mu m for the x-ray energy of Au L alpha. The effects of the dual Cr-Mo x-ray beam excitation were investigated. It was confirmed that the XRF intensity of light elements was increased by applying the Cr-target x-ray tube in a confocal configuration. In the proposed confocal configuration, 3D elemental mapping of the major elements of an amaranth seed was performed nondestructively at ambient air pressure. Each element of the seed showed different mapping images in the different depth layers. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:开发了一种基于共焦设置的新型3D微型XRF仪器,该仪器使用两个独立的多毛细管x射线透镜和两个x射线源(Cr和Mo靶)。将完整的多毛细管X射线透镜连接到每个X射线管。将另一半多毛细血管镜连接到硅漂移X射线检测器(SDD)。将三个透镜的焦点调整到一个共同的位置。对于Au Lα的x射线能量,使用10微米厚的金箔评估的深度分辨率约为90微米。研究了双Cr-Mo x射线束激发的影响。证实了通过以共焦配置施加Cr-靶x射线管增加了发光元件的XRF强度。在建议的共焦配置中,mar菜种子的主要元素的3D元素映射是在环境气压下无损执行的。种子的每个元素在不同的深度层显示不同的映射图像。版权所有(c)2007 John Wiley&Sons,Ltd.

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