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Trace element AMS at NRL: Initial use of a modified SIMS ion source

机译:NRL处的痕量元素AMS:最初使用改良的SIMS离子源

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There has been recent interest to attach a high-energy ion accelerator to the output of a secondary ion mass spectrometer (SIMS). NRL has undertaken such an effort, to improve the rejection of molecular ions and thus lower the limit of detection for masses above 90 Da. In this mass range molecules containing H, C, N, O and other light species that are present can create molecular interferences with M/ΔM values greater than 10,000. These create a background difficult to remove in conventional SIMS analysis. Using a tandem accelerator and a gas stripper cell, molecules can be broken apart, leaving only atomic ions to measure. By measuring the energy of collected ions, residual interferences caused by molecular fragments in altered charge states can be rejected. The NRL AMS facility provides a further enhancement, in that this system is designed to transmit ions in parallel over a broad mass range. This enables higher precision measurements, for example of isotope ratios, but also allows efficient and sensitive data collection over a relatively broad mass spectrum. This is important, for example, for Genesis Return Mission samples that have trapped solar wind atoms in the surface of collector plates of various materials. This paper presents initial results obtained using the new configuration of the NRL AMS system.
机译:最近有兴趣将高能离子加速器连接到次级离子质谱仪(SIMS)的输出上。 NRL进行了这样的努力,以改善分子离子的排斥,从而降低90 Da以上质量的检测限。在此质量范围内,包含H,C,N,O和其他轻物质的分子会产生M /ΔM值大于10,000的分子干扰。这些会造成难以在常规SIMS分析中消除的背景。使用串联加速器和气体汽提池,可以将分子分解,仅留下原子离子进行测量。通过测量收集到的离子的能量,可以消除由处于电荷状态改变的分子碎片引起的残留干扰。 NRL AMS设施提供了进一步的增强功能,因为该系统旨在在较宽的质量范围内并行传输离子。这样可以进行更高精度的测量,例如同位素比测量,还可以在相对较宽的质谱范围内进行有效而敏感的数据收集。例如,这对于“创世纪归还任务”样本很重要,该样本已将太阳风原子捕获在各种材料的收集板表面中。本文介绍了使用NRL AMS系统的新配置获得的初步结果。

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