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NanoSIMS: A new tool in cosmochemistry

机译:NanoSIMS:宇宙化学的新工具

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The Cameca NanoSIMS 50 is a new generation ion microprobe, characterized by high spatial resolution (down to 50 nm), high transmission, and simultaneous detection of up to six isotopes. After 4 years of operation the NanoSIMS has now become a well established tool in cosmochemistry which has significantly contributed to a better understanding of the presence of presolar matter in primitive solar system materials and on the early solar system history. Examples of important breakthroughs are: (i) discovery of silicate stardust in interplanetary dust particles and primitive meteorites; (ii) extension of isotopic studies to submicrometer-sized presolar SiC and spinel grains separated from primitive meteorites by chemical and physical treatments; (iii) identification of isotopic heteorogeneities within micrometer-sized presolar grains; (iv) coordinated NanoSIMS-TEM studies made it possible to obtain simultaneous information on the mineralogy, structure, and isotopic composition of presolar materials; (v) detection of radiogenic Ni-60 from the decay of radioactive Fe-60 (half life 1.5 Ma) and of radiogenic Cr-53 from the decay of radioactive Mn-53 (half life 3.7 Ma) in meteoritic minerals. (c) 2006 Elsevier B.V. All rights reserved.
机译:Cameca NanoSIMS 50是新一代离子微探针,具有高空间分辨率(低至50 nm),高透射率以及最多可同时检测六个同位素的特点。经过4年的运行,NanoSIMS现已成为宇宙化学中成熟的工具,为更好地了解原始太阳系材料中太阳前物质的存在以及早期太阳系历史做出了巨大贡献。重要突破的例子有:(i)在行星际尘埃颗粒和原始陨石中发现硅酸盐星尘; (ii)将同位素研究扩展到通过化学和物理处理从原始陨石中分离出的亚微米级太阳前SiC和尖晶石晶粒; (iii)识别微米级太阳前晶粒内的同位素异质性; (iv)协调的NanoSIMS-TEM研究使得可以同时获得有关前太阳物质的矿物学,结构和同位素组成的信息; (v)从陨石矿物中放射性Fe-60(半衰期为1.5 Ma)的衰变中检测出放射性Ni-60,从放射性Mn-53衰变(半衰期为3.7 Ma)中检测出放射性Cr-53。 (c)2006 Elsevier B.V.保留所有权利。

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