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Emulation of the Curiosity rover alpha particle X-ray spectrometer with accelerator-based PIXE: Implications for calibration

机译:使用基于加速器的PIXE模拟好奇号流动站α粒子X射线光谱仪:对校准的启示

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摘要

A 2.5 MeV broad-beam PIXE system was designed to emulate the alpha particle X-ray spectrometer (APXS) of the Curiosity rover. APXS measurements of the light elements (sodium, magnesium and aluminum) in powdered rock standards showed systematic deviations arising from the rock's violation of the assumption of atomic scale sample homogeneity. These deviations, which are dependent on the iron concentration of the sample, were confirmed with high-accuracy accelerator-based PIXE measurements. Systematically low iron concentrations, not seen in APXS measurements, were present in the PIXE results. These are unlikely to arise due to violation of the homogeneity assumption. Measured particle-size distributions suggest that they are more likely due to the grain size distribution of iron-bearing minerals in the powdered standards. Terrestrial analogs to recently discovered Martian rock types were used to extend the calibration to include high iron and high-alkali samples.
机译:设计了一个2.5 MeV的宽束PIXE系统,以模拟好奇号流动站的α粒子X射线光谱仪(APXS)。粉末状岩石标准品中轻元素(钠,镁和铝)的APXS测量表明,由于岩石违反了原子尺度样品均质性的假设,导致系统偏差。这些偏差取决于样品中的铁浓度,已通过基于加速器的高精度PIXE测量得到了证实。 PIXE结果中显示出在APXS测量中未发现的系统性低铁浓度。由于违反同质性假设,因此不太可能出现这些情况。测得的粒度分布表明它们更有可能是由于粉状标准品中含铁矿物的粒度分布所致。最近发现的火星岩石类型的地面类似物被用来扩展校准范围,以包括高铁和高碱度样品。

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