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用于行星空间研究原位探测的微型激光烧蚀飞行时间质谱仪的性能评估。

Performance evaluation of a miniature laser ablation time-of-flight mass spectrometer designed for in situ investigations in planetary space research.

机构信息

Space Research and Planetary Sciences, Physics Institute, University of Bern, Sidlerstrasse 5, 3012, Bern, Switzerland.

出版信息

J Mass Spectrom. 2013 Jan;48(1):1-15. doi: 10.1002/jms.3104.

Abstract

Key performance features of a miniature laser ablation time-of-flight mass spectrometer designed for in situ investigations of the chemical composition of planetary surfaces are presented. This mass spectrometer is well suited for elemental and isotopic analysis of raw solid materials with high sensitivity and high spatial resolution. In this study, ultraviolet laser radiation with irradiances suitable for ablation (< 1 GW/cm(2)) is used to achieve stable ion formation and low sample consumption. In comparison to our previous laser ablation studies at infrared wavelengths, several improvements to the experimental setup have been made, which allow accurate control over the experimental conditions and good reproducibility of measurements. Current performance evaluations indicate significant improvements to several instrumental figures of merit. Calibration of the mass scale is performed within a mass accuracy (Δm/m) in the range of 100 ppm, and a typical mass resolution (m/Δm) ~600 is achieved at the lead mass peaks. At lower laser irradiances, the mass resolution is better, about (m/Δm) ~900 for lead, and limited by the laser pulse duration of 3 ns. The effective dynamic range of the instrument was enhanced from about 6 decades determined in previous study up to more than 8 decades at present. Current studies show high sensitivity in detection of both metallic and non-metallic elements. Their abundance down to tens of ppb can be measured together with their isotopic patterns. Due to strict control of the experimental parameters, e.g. laser characteristics, ion-optical parameters and sample position, by computer control, measurements can be performed with high reproducibility.

摘要

介绍了一款为原位探测行星表面化学成分而设计的微型激光烧蚀飞行时间质谱仪的主要性能特点。该质谱仪非常适合对原始固体材料进行元素和同位素分析,具有高灵敏度和高空间分辨率。在这项研究中,使用适合烧蚀的紫外激光辐射(<1GW/cm(2)),以实现稳定的离子形成和低样品消耗。与我们之前在红外波长下的激光烧蚀研究相比,对实验装置进行了几项改进,这允许对实验条件进行精确控制,并且可以很好地重现测量结果。目前的性能评估表明,几个仪器性能指标有了显著提高。质量标度的校准在质量精度(Δm/m)范围内达到 100ppm,在铅质量峰处实现典型的质量分辨率(m/Δm)600。在较低的激光辐射下,质量分辨率更好,约为(m/Δm)900,这受到 3ns 激光脉冲宽度的限制。仪器的有效动态范围从之前研究中确定的约 6 个数量级提高到目前的超过 8 个数量级。目前的研究表明,在检测金属和非金属元素方面具有很高的灵敏度。它们的丰度可以达到几十 pptb,并可以与它们的同位素模式一起测量。由于通过计算机控制对实验参数(例如激光特性、离子光学参数和样品位置)进行严格控制,因此可以进行具有高重现性的测量。

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