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From the Cover: Magnetic evidence for a partially differentiated carbonaceous chondrite parent body

机译:从封面:部分分化的碳质球粒陨石母体的磁性证据

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摘要

The textures of chondritic meteorites demonstrate that they are not the products of planetary melting processes. This has long been interpreted as evidence that chondrite parent bodies never experienced large-scale melting. As a result, the paleomagnetism of the CV carbonaceous chondrite Allende, most of which was acquired after accretion of the parent body, has been a long-standing mystery. The possibility of a core dynamo like that known for achondrite parent bodies has been discounted because chondrite parent bodies are assumed to be undifferentiated. Resolution of this conundrum requires a determination of the age and timescale over which Allende acquired its magnetization. Here, we report that Allende’s magnetization was acquired over several million years (Ma) during metasomatism on the parent planetesimal in a >  ∼ 20 μT field up to approximately 9—10 Ma after solar system formation. This field was present too recently and directionally stable for too long to have been generated by the protoplanetary disk or young Sun. The field intensity is in the range expected for planetesimal core dynamos, suggesting that CV chondrites are derived from the outer, unmelted layer of a partially differentiated body with a convecting metallic core.
机译:粒状陨石的质地表明它们不是行星熔化过程的产物。长期以来,这一直被解释为球粒陨石母体从未经历大规模熔化的证据。结果,CV碳质球粒陨石Allende的古磁性已成为一个由来已久的谜团,其中大部分是在母体繁殖后获得的。由于假定球粒母体是未分化的,因此像圆角晶母体那样的核心发电机的可能性被低估了。要解决这个难题,就必须确定阿连德获得磁化强度的年龄和时间范围。在这里,我们报告说,阿连德的磁化过程是在父系小行星的交变过程中,在大于20 µT的磁场中,经过长达数百万年的时间获得的,直到太阳系形成后大约9-10 Ma。这个磁场太新出现了,方向稳定了太久,以至于原行星盘或年轻的太阳都没有产生过。磁场强度在预期的小行星核心动力范围内,这表明CV球粒陨石来源于具有对流金属核心的部分分化物体的外部未融化层。

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