具有多色x射线样品激发的新型紧凑型微型xrf光谱仪

IF 1.5 4区 物理与天体物理 Q3 SPECTROSCOPY
Peter Wobrauschek, Dieter Ingerle, Josef Prost, Sangita Dhara, Nand Lal Mishra, Michael Iro, Christina Streli
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引用次数: 0

摘要

研制了一种新型的紧凑型、覆盖范围广的微x射线荧光(μ-XRF)光谱仪。介绍了该新型小型定制μ-XRF光谱仪的工作性能。该光谱仪采用低功率Rh靶x射线管进行样品激发。多毛细光学将多色光束聚焦到40 μm以下。发射的辐射由一个晶体尺寸为30mm2的peltier冷却硅漂移探测器测量。观察到,多色激发为样品的有效激发提供了足够的光子,从而获得了良好的检测限和面积分辨率。对薄膜样品的检出限与TXRF相当。目前设置的优点是,它适用于特定应用,例如,需要在手套箱或通风柜中采用仪器的放射性和有毒样品,因为它具有良好的分析功能,同时仪器简单紧凑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new compact micro-XRF spectrometer with polychromatic x-ray sample excitation
A new compact micro-x-ray fluorescence (μ-XRF) spectrometer covering wide range of elements was developed and fabricated. The working capabilities of this new compact custom-made μ-XRF spectrometer are presented. The spectrometer uses a low power Rh target x-ray tube for sample excitation. Polycapillary optics focuses the polychromatic beam down to 40 μm. The emitted radiation is measured by a peltier cooled silicon drift detector of 30 mm2 crystal size. It was observed that the polychromatic excitation provides sufficient photons for an efficient excitation of the sample to achieve good detection limit and area resolution. The detection limits are comparable with that one obtained by TXRF for a thin film sample. The advantage of the present setup, is the fact that it is suitable for specific applications for example, for radioactive and toxic samples requiring instrument adoption in glove boxes or fume hoods because of its good analytical features accompanied by simple and compact instrumentation.
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来源期刊
X-Ray Spectrometry
X-Ray Spectrometry 物理-光谱学
CiteScore
3.10
自引率
8.30%
发文量
38
审稿时长
6-12 weeks
期刊介绍: X-Ray Spectrometry is devoted to the rapid publication of papers dealing with the theory and application of x-ray spectrometry using electron, x-ray photon, proton, γ and γ-x sources. Covering advances in techniques, methods and equipment, this established journal provides the ideal platform for the discussion of more sophisticated X-ray analytical methods. Both wavelength and energy dispersion systems are covered together with a range of data handling methods, from the most simple to very sophisticated software programs. Papers dealing with the application of x-ray spectrometric methods for structural analysis are also featured as well as applications papers covering a wide range of areas such as environmental analysis and monitoring, art and archaelogical studies, mineralogy, forensics, geology, surface science and materials analysis, biomedical and pharmaceutical applications.
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