首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Ultra-primitive interplanetary dust particles from the comet 26P/Grigg-Skjellerup dust stream collection
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Ultra-primitive interplanetary dust particles from the comet 26P/Grigg-Skjellerup dust stream collection

机译:来自彗星26P / Grigg-Skjellerup尘埃流收集的超原始行星际尘埃颗粒

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摘要

Cometary material and pristine interplanetary dust particles (IDPs) best resemble the unaltered components from which our solar system was built because they have remained largely unaltered in a cold undisturbed environment since accretion in the outer protoplanetary disk. IDPs might supply more primitive assemblages for laboratory analysis than Stardust samples from comet 81P/Wild 2 but their individual provenances are typically unknown. We speculate that some IDPs collected by NASA in April 2003 may be associated with comet 26P/Grigg-Skjellerup because their particularly pristine character coincides with the collection period that was predicted to show an enhanced flux of particles from this Jupiter-family comet. Some IDPs from this collection contain the most primitive assembly of interstellar matter found to date including an unusually high abundance of presolar grains and very isotopically anomalous and disordered organic matter as well as fine-grained carbonates and an amphibole associated with a GEMS-like object (glass with embedded metals and sulfides) that potentially imply formation in a nebular rather than planetary environment. The two most primitive IDPs may contain assemblages of molecular cloud material at the percent level which is supported by the presence of four rare O-17-depleted presolar silicate grains possibly of supernova(e) origin within one similar to 70 mu m(2)-sized IDP and the close association of a Group 1 Mg-rich olivine from a low-mass red giant star with a carbonaceous nano-globule of potentially interstellar origin. Our study together with observations of comet 9P/Tempel 1 during the Deep Impact experiment and 81P/Wild 2 dust analyses reveal some compositional variations and many similarities among three Jupiter-family comets. Specifically carbonates and primitive organic matter or amorphous carbon were widespread in the comet-forming regions of the outer protoplanetary disk and not all comets contain as much inner solar system material as has been inferred for comet 81P/Wild 2. The bulk and hotspot hydrogen and nitrogen isotopic anomalies as well as the carbon Raman characteristics of the organic matter in IDPs and the most primitive meteorites are remarkably similar. This implies that the same mixture of molecular cloud material had been transported inward into the meteorite-forming regions of the solar system.
机译:彗星物质和原始行星际尘埃颗粒(IDP)最类似于构建我们太阳系的未改变的组件,因为自从外层原行星盘积聚以来,它们在寒冷,不受干扰的环境中基本上保持不变。与来自81P / Wild 2彗星的星尘样品相比,国内流离失所者可能为实验室分析提供更多原始组合,但其个体出处通常未知。我们推测,NASA在2003年4月收集到的一些IDP可能与26P / Grigg-Skjellerup彗星有关,因为它们的原始特性与收集期相符,而该收集期预计会显示出来自该木星家族彗星的粒子通量增加。该集合中的一些IDP包含迄今为止发现的最原始的星际物质集合,包括异常高的太阳前颗粒,非常同位素异常和无序的有机物质,以及与GEMS样物体相关的细粒碳酸盐和闪石(嵌入金属和硫化物的玻璃)可能暗示在星云而非行星环境中形成。两个最原始的IDP可能包含百分比水平的分子云物质集合,这由以下四个可能的超新星(e)来源的稀有O-17耗竭的O-17贫化太阳前硅酸盐晶粒支持,其中一个类似于70μm(2)。大小的IDP和低质量的红色巨星中富含镁的1组富橄榄石与潜在星际起源的碳纳米球的紧密联系。我们的研究以及在深撞击实验中对9P / Tempel 1彗星的观测以及对81P / Wild 2尘埃的分析揭示了3个木星家族彗星的某些成分变化和许多相似之处。特别是碳酸盐和原始有机质或无定形碳广泛分布在外原行星盘的彗星形成区域,并不是所有的彗星都含有像对81P / Wild 2彗星推断的那样多的内部太阳系物质。 IDPs和最原始的陨石中的氮同位素异常以及有机物的碳拉曼特征非常相似。这意味着分子云物质的相同混合物已被向内输送到太阳系的陨石形成区域。

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