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Composition of the Rheasilvia basin, a window into Vesta's interior

机译:Rheasilvia盆地的组成,通向Vesta内部的一扇窗户

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The estimated excavation depth of the huge Rheasilvia impact basin is nearly twice the likely thickness of the Vestan basaltic crust, so the mantle should be exposed. Spectral mapping by the Dawn spacecraft reveals orthopyroxene-rich materials, similar to diogenite meteorites, in the deepest parts of the basin and within its walls. Significant amounts of olivine are predicted for the mantles of bulk-chondritic bodies like Vesta, and its occurrence is demonstrated by some diogenites that are harzburgite and dunite. However, olivine has so far escaped detection by Dawn's instruments. Spectral detection of olivine in the presence of orthopyroxene is difficult in samples with <25% olivine, and olivine in Rheasilvia might have been diluted during impact mixing or covered by the collapse of basin walls. The distribution of diogenite inferred from its exposures in and around Rheasilvia provides a geologic context for the formation of these meteorites, but does not clearly distinguish between a magmatic cumulate versus partial melting restite origin for diogenites. The former is favored by geochemical arguments, and crystallization in either a magma ocean or multiple plutons emplaced near the crust-mantle boundary is permitted by Dawn observations. Key PointsExcavation of Rheasilvia has exposed Vesta's mantleMantle consists of diogeniteNo olivine has been detected.
机译:巨大的Rheasilvia冲击盆地的估计开挖深度几乎是Vestan玄武岩壳可能厚度的两倍,因此应露出地幔。黎明航天器进行的光谱制图揭示了盆地最深处及其壁内富含邻苯二茂铁的物质,类似于二元陨石。据预测,大块状软骨状体(如维斯塔)的地幔中会出现大量的橄榄石,而某些地闪石和榴辉岩等地成岩则证明了橄榄石的存在。但是,到目前为止,橄榄石无法通过Dawn的仪器进行检测。在含少于25%橄榄石的样品中,很难在邻位茂存在下对橄榄石进行光谱检测,并且Rheasilvia中的橄榄石可能在冲击混合过程中被稀释或被盆壁塌陷所覆盖。从其在Rheasilvia内及其周围的暴露推断出的重铁矿的分布为这些陨石的形成提供了地质背景,但并未清楚地区分重铁矿的岩浆成矿和部分熔融的重晶石起源。前者受到地球化学观点的青睐,黎明的观测允许在岩浆海洋或地壳-地幔边界附近放置的多个云母中结晶。关键点Rheasilvia的发掘暴露了Vesta的地幔地幔由双辉石组成未检测到橄榄石。

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