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Proterozoic low orbital obliquity and axial-dipolar geomagnetic field from evaporite palaeolatitudes

机译:蒸发岩古生界的元古代低轨道倾角和轴偶极地磁场

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摘要

Palaeomagnetism of climatically sensitive sedimentary rock types, such as glacial deposits and evaporites, can test the uniformitarianism of ancient geomagnetic fields and palaeoclimate zones. Proterozoic glacial deposits laid down in near-equatorial palaeomagnetic latitudes can be explained by 'snowball Earth' episodes, high orbital obliquity or markedly non-uniformitarian geomagnetic fields. Here I present a global palaeomagnetic compilation of the Earth's entire basin-scale evaporite record. Magnetic inclinations are consistent with low orbital obliquity and a geocentric-axial-dipole magnetic field for most of the past two billion years, and the snowball Earth hypothesis accordingly remains the most viable model for low-latitude Proterozoic ice ages. Efforts to reconstruct Proterozoic supercontinents are strengthened by this demonstration of a consistently axial and dipolar geomagnetic reference frame, which itself implies stability of geodynamo processes on billion-year timescales.
机译:气候敏感的沉积岩类型(如冰川沉积和蒸发岩)的古磁性可以测试古代地磁场和古气候带的均一性。沉积在近赤道古磁性纬度的元古代冰川沉积可以用“雪球地球”事件,高轨道倾角或明显非均匀的地磁场来解释。在这里,我介绍了地球整个盆地规模蒸发岩记录的全球古地磁汇编。在过去的二十亿年中的大部分时间里,磁倾角与低轨道倾角和地心轴偶极子磁场一致,因此,雪球地球假说仍然是低纬度元古代冰河时代最可行的模型。通过证明一致的轴向和偶极地磁参考框架,可以加强重建元古代超大陆的工作,这本身就暗示了地发电机过程在十亿年时间尺度上的稳定性。

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