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Magnetism and mineralogy of Almahata Sitta polymict ureilite (= asteroid 2008 TC 3): Implications for the ureilite parent body magnetic field

机译:almahata sitta polymict ureilite(=小行星2008 TC 3)的磁性和矿物学:对尿素体母体磁场的影响

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摘要

The Almahata Sitta meteorite is the first case of recovered extraterrestrial material originating from an asteroid that was detected in near Earth space shortly before entering and exploding in the high atmosphere. The aims of our project within the 2008 TC 3 consortium were investigating Almahata Sitta’s (AS) magnetic signature, phase composition and mineralogy, focussing on the opaque minerals, and gaining new insights into the magnetism of the ureilite parent body (UPB). We report on the general magnetic properties and behavior of Almahata Sitta and try to place the results in context with the existing data set on ureilites and ureilite parent body models. The magnetic signature of AS is dominated by a set of low-Ni kamacites with large grain sizes. Additional contributions come from micron-sized kamacites, suessite, (Cr) troilite, and daubreelite, mainly found in the olivine grains adjacent to carbon-rich veins. Our results show that the paleomagnetic signal is of extraterrestrial origin as can be seen by comparing with laboratory produced magnetic records (IRM). Four types of kamacite (I-IV) have been recognized in the sample. The elemental composition of the ureilite vein metal Kamacite I (particularly Co) clearly differs from the other kamacites (II-IV), which are considered to be indigenous. Element ratios of kamacite I indicate that it was introduced into the UPB by an impactor, supporting the conclusions of Gabriel and Pack (2009).
机译:Almahata Sitta陨石是从小行星起源的回收的外星物质的第一例,该小行星在进入高空大气层并在爆炸之前不久在地球附近被发现。我们在2008年TC 3财团中的项目目标是调查Almahata Sitta(AS)的磁学特征,相组成和矿物学,着眼于不透明的矿物,并获得对尿素母体(UPB)磁学的新见解。我们报告了Almahata Sitta的一般磁性能和行为,并试图将结果与现有的尿素石和尿素石母体模型数据集联系起来。 AS的磁性特征是由一组具有大晶粒尺寸的低Ni钾长石组成的。额外的贡献来自微米级的钾长石,苏铁矿,(Cr)闪锌矿和水辉石,主要存在于与富碳脉相邻的橄榄石晶粒中。我们的结果表明,与实验室产生的磁记录(IRM)相比,可以看到古磁信号是地外起源的。样品中已识别出四种类型的kamacite(I-IV)。尿素石脉状金属Kamacite I(特别是Co)的元素组成明显不同于认为是本土的其他kamacite(II-IV)。 kamacite I的元素比率I表明它是由冲击器引入UPB的,支持了Gabriel和Pack(2009)的结论。

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