【2h】

Cometary dust: the diversity of primitive refractory grains

机译:彗星尘:原始耐火粒的多样性

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摘要

Comet dust is primitive and shows significant diversity. Our knowledge of the properties of primitive cometary particles has expanded significantly through microscale investigations of cosmic dust samples (anhydrous interplanetary dust particles (IDPs), chondritic porous (CP) IDPs and UltraCarbonaceous Antarctic micrometeorites, Stardust and Rosetta), as well as through remote sensing (Spitzer IR spectroscopy). Comet dust are aggregate particles of materials unequilibrated at submicrometre scales. We discuss the properties and processes experienced by primitive matter in comets. Primitive particles exhibit a diverse range of: structure and typology; distribution of constituents; concentration and form of carbonaceous and refractory organic matter; Mg- and Fe-contents of the silicate minerals; sulfides; existence/abundance of type II chondrule fragments; high-temperature calcium–aluminium inclusions and ameboid-olivine aggregates; and rarely occurring Mg-carbonates and magnetite, whose explanation requires aqueous alteration on parent bodies. The properties of refractory materials imply there were disc processes that resulted in different comets having particular selections of primitive materials. The diversity of primitive particles has implications for the diversity of materials in the protoplanetary disc present at the time and in the region where the comets formed.This article is part of the themed issue ‘Cometary science after Rosetta’.
机译:彗星尘埃是原始的,显示出显着的多样性。通过对宇宙尘埃样品(无水行星际尘埃颗粒(IDP),软骨状多孔(CP)IDP和超碳质南极微陨石,星尘和罗塞塔)进行微观研究,以及通过遥感,我们对原始彗星颗粒性质的了解已大大扩展。 (Spitzer红外光谱)。彗星尘埃是亚微米级不平衡物质的聚集颗粒。我们讨论了彗星中原始物质所经历的特性和过程。原始粒子表现出多种多样的范围:结构和类型;成分分配;碳质和耐火有机质的浓度和形式;硅酸盐矿物的镁和铁含量;硫化物; II型软骨碎片的存在/丰富;高温钙铝夹杂物和类闪石-橄榄石聚集体;很少发生碳酸镁和磁铁矿,其解释要求母体发生水蚀变质。耐火材料的特性意味着存在盘形过程,导致不同的彗星具有特定的原始材料选择。原始粒子的多样性对当时和形成彗星的地区的原行星盘中物质的多样性有影响。本文是“罗塞塔之后的彗星科学”主题问题的一部分。

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