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源自“创世纪”类金刚石碳膜的太阳风整体镁同位素

Magnesium isotopes of the bulk solar wind from Genesis diamond-like carbon films.

作者信息

Jurewicz A J G, Rieck K D, Hervig R, Burnett D S, Wadhwa M, Olinger C T, Wiens R C, Laming J M, Guan Y, Huss G R, Reisenfeld D B, Williams P

机构信息

Center for Meteorite Studies Arizona State University m/c 6004 Tempe Arizona 85287 USA.

New Mexico Consortium 4200 West Jemez Road Suite 200 Los Alamos New Mexico 87544 USA.

出版信息

Meteorit Planet Sci. 2020 Feb;55(2):352-375. doi: 10.1111/maps.13439. Epub 2020 Jan 22.

Abstract

NASA's Genesis Mission returned solar wind (SW) to the Earth for analysis to derive the composition of the solar photosphere from solar material. SW analyses control the precision of the derived solar compositions, but their ultimate accuracy is limited by the theoretical or empirical models of fractionation due to SW formation. Mg isotopes are "ground truth" for these models since, except for CAIs, planetary materials have a uniform Mg isotopic composition (within ≤1‰) so any significant isotopic fractionation of SW Mg is primarily that of SW formation and subsequent acceleration through the corona. This study analyzed Mg isotopes in a bulk SW diamond-like carbon (DLC) film on silicon collector returned by the Genesis Mission. A novel data reduction technique was required to account for variable ion yield and instrumental mass fractionation (IMF) in the DLC. The resulting SW Mg fractionation relative to the DSM-3 laboratory standard was (-14.4‰, -30.2‰) ± (4.1‰, 5.5‰), where the uncertainty is 2ơ SE of the data combined with a 2.5‰ (total) error in the IMF determination. Two of the SW fractionation models considered generally agreed with our data. Their possible ramifications are discussed for O isotopes based on the CAI nebular composition of McKeegan et al. (2011).

摘要

美国国家航空航天局的“创世纪”任务将太阳风带回地球进行分析,以便从太阳物质中推导太阳光球层的成分。太阳风分析控制着推导得出的太阳成分的精度,但其最终精度受到太阳风形成过程中分离的理论或经验模型的限制。镁同位素是这些模型的“基准事实”,因为除了钙铝包体之外,行星物质具有均匀的镁同位素组成(≤1‰范围内),所以太阳风镁的任何显著同位素分馏主要是太阳风形成以及随后通过日冕加速过程中的分馏。本研究分析了“创世纪”任务带回的、硅收集器上的块状类金刚石碳(DLC)薄膜中的镁同位素。需要一种新颖的数据处理技术来考虑DLC中可变的离子产率和仪器质量分馏(IMF)。相对于DSM - 3实验室标准,所得的太阳风镁分馏为(-14.4‰,-30.2‰)±(4.1‰,5.5‰),其中不确定性是数据的2ơ标准误差与IMF测定中2.5‰(总计)误差之和。所考虑的两种太阳风分馏模型总体上与我们的数据一致。基于麦基根等人(2011年)的钙铝包体星云组成,讨论了它们对氧同位素可能产生的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/049c/7079557/61006ff3874a/MAPS-55-352-g001.jpg

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