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首页> 外文期刊>Meteoritics & planetary science >Stardust Interstellar Preliminary Examination VII: Synchrotron X-ray fluorescence analysis of six Stardust interstellar candidates measured with the Advanced Photon Source 2-ID-D microprobe
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Stardust Interstellar Preliminary Examination VII: Synchrotron X-ray fluorescence analysis of six Stardust interstellar candidates measured with the Advanced Photon Source 2-ID-D microprobe

机译:星尘星际初步检查VII:用先进光子源2-ID-D微探针测量的六种星尘星际候选者的同步X射线荧光分析

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摘要

The NASA Stardust spacecraft exposed an aerogel collector to the interstellar dust passing through the solar system. We performed X-ray fluorescence element mapping and abundance measurements, for elements 19 ≤ Z ≤ 30, on six “interstellar candidates,” potential interstellar impacts identified by Stardust@Home and extracted for analyses in picokeystones. One, I1044,3,33, showed no element hot-spots within the designated search area. However, we identified a nearby surface feature, consistent with the impact of a weak, high-speed particle having an approximately chondritic (CI) element abundance pattern, except for factor-of-ten enrichments in K and Zn and an S depletion. This hot-spot, containing approximately 10 fg of Fe, corresponds to an approximately 350 nm chondritic particle, small enough to be missed by Stardust@Home, indicating that other techniques may be necessary to identify all interstellar candidates. Only one interstellar candidate, I1004,1,2, showed a track. The terminal particle has large enrichments in S, Ti, Cr, Mn, Ni, Cu, and Zn relative to Fe-normalized CI values. It has high Al/Fe, but does not match the Ni/Fe range measured for samples of Al-deck material from the Stardust sample return capsule, which was within the field-of-view of the interstellar collector. A third interstellar candidate, I1075,1,25, showed an Al-rich surface feature that has a composition generally consistent with the Al-deck material, suggesting that it is a secondary particle. The other three interstellar candidates, I1001,1,16, I1001,2,17, and I1044,2,32, showed no impact features or tracks, but allowed assessment of submicron contamination in this aerogel, including Fe hot-spots having CI-like Ni/Fe ratios, complicating the search for CI-like interstellar/interplanetary dust.
机译:NASA星尘飞船将气凝胶收集器暴露在穿过太阳系的星际尘埃中。我们对六个“星际候选物”进行了X射线荧光元素映射和丰度测量(元素19≤Z≤30),这是由Stardust @ Home识别并提取出来的潜在星际撞击的结果,用于皮基石中的分析。其中一个I1044、3、33在指定的搜索区域内未显示任何元素热点。但是,我们确定了附近的表面特征,这与弱的高速粒子的影响相一致,该粒子具有近似软骨组织(CI)元素丰度的模式,除了十倍于K和Zn的富集和S耗竭。这个热点包含大约10 fg的铁,对应于大约350 nm的软骨颗粒,足够小以至于Stardust @ Home会错过,表明可能需要其他技术来识别所有星际候选者。只有一个星际候选者I1004,1,2显示了一条轨道。相对于铁标准化的CI值,末端粒子在S,Ti,Cr,Mn,Ni,Cu和Zn中具有大量富集。它具有较高的Al / Fe,但与星尘样品返回舱中Al-deck材料样品的Ni / Fe范围不匹配,该范围在星际收集器的视野内。第三个星际候选星I1075,1,25显示出富含Al的表面特征,其成分通常与Al-Deck材料一致,表明它是次要粒子。其他三个星际候选物I1001、1、16,I1001、2、17和I1044、2、32没有显示出撞击特征或轨迹,但允许评估该气凝胶中的亚微米污染,包括具有CI-的Fe热点。像镍/铁比,使寻找类似CI的星际/行星际尘埃变得复杂。

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