Mindur Bartosz, Fiutowski Tomasz, Koperny Stefan, Wiącek Piotr, Dąbrowski Władysław
Faculty of Physics and Applied Computer Science, AGH University of Science and Technology, al. Mickiewicza 30, 30-059 Kraków, Poland.
Sensors (Basel). 2020 May 14;20(10):2784. doi: 10.3390/s20102784.
In this paper, we report on the systematic study of different variants of X-ray detectors based on GEM technology using modified GEM foils with greatly reduced amount of copper. The main goal of this study was understanding the performance of such detectors applied in X-Ray Fluorescence (XRF) elemental analysis. Reduction of the amount of copper in the detector structure is crucial for suppression of XRF background from copper, but one has to ensure that key detector parameters are not affected by such modification. The tested detector variants include detectors with different types of copper-less GEM foils, which have been manufactured starting from standard copper-clad foils and removing partially the copper layer in additional post-processing steps. The results are analyzed and discussed with a particular focus on the energy resolution, uniformity of gas gain and energy resolution across the detector area, and on the long-term stability of the gas gain. Long-term stability tests performed for selected detectors do not indicate for any accelerated aging of the copper-less detectors compared to standard detectors using copper-clad GEM foils. The presented results lead us to conclude that the copper-less GEM detectors are promising devices to suppress the XRF background.
在本文中,我们报告了基于GEM技术的不同变体X射线探测器的系统研究,这些探测器使用了铜含量大幅降低的改良GEM箔。本研究的主要目标是了解此类探测器在X射线荧光(XRF)元素分析中的性能。减少探测器结构中的铜含量对于抑制来自铜的XRF背景至关重要,但必须确保关键探测器参数不受此类修改的影响。测试的探测器变体包括具有不同类型无铜GEM箔的探测器,这些探测器是从标准覆铜箔开始制造的,并在额外的后处理步骤中部分去除铜层。对结果进行了分析和讨论,特别关注能量分辨率、气体增益的均匀性以及探测器区域内的能量分辨率,以及气体增益的长期稳定性。对选定探测器进行的长期稳定性测试并未表明无铜探测器与使用覆铜GEM箔的标准探测器相比有任何加速老化现象。所呈现的结果使我们得出结论,无铜GEM探测器是抑制XRF背景的有前景的器件。