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Germanium Collimating micro-Channel Arrays For High Resolution, High Energy Confocal X-ray Fluorescence Microscopy

机译:用于高分辨率高能量共聚焦X射线荧光显微镜的锗准直微通道阵列

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Confocal x-ray fluorescence microscopy (CXRF) allows direct detection of x-ray fluorescence from a micron-scale 3D volume of an extended, unthinned sample. We have previously demonstrated the use of a novel collection optic, fabricated from silicon, that improves the spatial resolution of this approach by an order of magnitude over CXRF using polycapillaries. The optic, called a collimating channel array (CCA), consists of micron-scale, lithographically-fabricated arrays of collimating channels, all directed towards a single source position. Due to the limited absorbing power of silicon, the useful energy range of these optics was limited to fluorescence emission below about 10 keV. Here, we report fabrication of CCAs from germanium substrates, and demonstrate their practical use for CXRF up to 20 keV. Specifically we demonstrate a nearly energy-independent critical spatial resolution d_R of 2.1±0.17 μm from 2-20 keV, as well as excellent background reduction compared to silicon-based CCAs throughout this energy range. Design details of the optic and background-reduction holder are described. Two versions of the optic are now available upon request at the beamline 20ID-B, Advanced Photon Source (APS) - Argonne National Laboratory.
机译:共焦X射线荧光显微镜(CXRF)允许从扩展,未稀释样品的微米级3D体积直接检测X射线荧光的。我们已经证实使用一种新颖的收集光学器件,由硅制成,改善通过使用polycapillaries超过CXRF一个数量级这一方法的空间分辨率的。的镜片,称为准直通道阵列(CCA),由微米级,准直通道的光刻制作的阵列,所有针对单个源位置的。由于硅的有限吸收能力,这些光学器件的有用的能量范围被限制在荧光发射低于约10千电子伏。在这里,我们从锗基板共同国家评估报告的制作,并表明其对CXRF实际使用可达20千电子伏。具体而言,我们证明几乎独立的能量临界空间分辨率的2.1±0.17微米2-20千电子伏D_R,以及优良的背景相比减少整个能量范围的基于硅的共同国家评估。光学元件和背景减少保持件的设计细节进行说明。光学器件的两个版本现在可根据在光束线20ID-B,先进光子源(APS)的要求 - 阿贡国家实验室。

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