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Potassium isotope anomalies in meteorites inherited from the protosolar molecular cloud

机译:从原激光分子云继承的陨石中的钾同位素异常

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Potassium (K) and other moderately volatile elements are depleted in many solar system bodies relative to CI chondrites, which closely match the composition of the Sun. These depletions and associated isotopic fractionations were initially believed to result from thermal processing in the protoplanetary disk, but so far, no correlation between the K depletion and its isotopic composition has been found. Our new high-precision K isotope data correlate with other neutron-rich nuclides (e.g., sup64/supNi and sup54/supCr) and suggest that the observed sup41/supK variations have a nucleosynthetic origin. We propose that K isotope anomalies are inherited from an isotopically heterogeneous protosolar molecular cloud, and were preserved in bulk primitive meteorites. Thus, the heterogeneous distribution of both refractory and moderately volatile elements in chondritic meteorites points to a limited radial mixing in the protoplanetary disk.
机译:相对于CI Chondrites的许多太阳能系统体,钾(K)和其他中等挥发性元件耗尽,这与Sun的组成密切匹配。最初认为这些耗尽和相关的同位素分级是由原始盘中的热处理产生的,但到目前为止,已经发现K耗尽与其同位素组合物之间的相关性。我们的新型高精度K同位素数据与其他中子富含中子核素(例如, 64 Ni和 54 Cr)相关,并表明观察到的 41 k变型具有核酸原源。我们提出了k同位素异常从同位素异质的原子原子云遗传,并被保存在块状原始陨石中。因此,在软骨质陨石中,难熔和中等挥发性元素的异质分布指向原生型盘中的有限径向混合。

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