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EDXRF imaging of Pb in glazed ceramics using a micropattern gas detector

机译:使用微模式气体检测器对釉面陶瓷中的Pb进行EDXRF成像

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摘要

A new system for energy-resolved X-ray fluorescence imaging using a microhole and strip plate (MHSP), a new type of micropattern gas detector (MPGD), is proposed. It works as a single photon counting detector with position and energy detection capability. The interaction of X-rays with the gas medium produces electrons via the photoelectric effect, and the number of electrons is proportional to the absorbed X-ray energy. These electrons are further multiplied in the MHSP. Position detection is achieved using the charge division method. The detector has an active area of 28 × 28 mm2 and shows good position resolution, about σ = 125 μm, an intrinsic energy resolution of about 14% FWHM for 5.9 keV X-rays, and a counting rate capability of up to 0.5 MHz. The system has shown good properties for energy-dispersive X-ray fluorescence (EDXRF) applications, since it allows efficient energy and position detection of fluorescence X-rays from multielemental samples. In this work, the system was used to study lead depth distributions in eighteenth-century Portuguese faiences from the Santa Clara-a-Velha monastery. The fluorescence images were obtained by irradiating the samples, with a pinhole placed between the sample and the detector to focus the radiation into the detector. The results are presented here, including the elemental map distributions for different samples.
机译:提出了一种使用微孔板(MHSP)进行能量分辨X射线荧光成像的新系统,一种新型微模式气体检测器(MPGD)。它用作具有位置和能量检测功能的单光子计数检测器。 X射线与气体介质的相互作用通过光电效应产生电子,并且电子数量与吸收的X射线能量成比例。这些电子在MHSP中进一步繁殖。位置检测通过电荷分配方法实现。该探测器的有效面积为28×28 mm2 ,显示出良好的位置分辨率,约为σ= 125μm,对于5.9 keV X射线,本征能量分辨率约为14%FWHM,计数率能力高达到0.5 MHz该系统对能量分散X射线荧光(EDXRF)应用具有良好的性能,因为它可以对来自多元素样品的荧光X射线进行有效的能量和位置检测。在这项工作中,该系统用于研究圣塔克拉拉修道院的18世纪葡萄牙陶器中铅的深度分布。通过照射样品获得荧光图像,并在样品和检测器之间放置一个针孔以将辐射聚焦到检测器中。此处显示结果,包括不同样本的元素图分布。

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