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解读地磁反转记录。

Deciphering records of geomagnetic reversals.

作者信息

Valet Jean-Pierre, Fournier Alexandre

机构信息

Institut de Physique du Globe de Paris, Sorbonne Paris Cité, Université Paris Diderot, UMR 7154 CNRS Paris France.

出版信息

Rev Geophys. 2016 Jun;54(2):410-446. doi: 10.1002/2015RG000506. Epub 2016 May 17.

Abstract

Polarity reversals of the geomagnetic field are a major feature of the Earth's dynamo. Questions remain regarding the dynamical processes that give rise to reversals and the properties of the geomagnetic field during a polarity transition. A large number of paleomagnetic reversal records have been acquired during the past 50 years in order to better constrain the structure and geometry of the transitional field. In addition, over the past two decades, numerical dynamo simulations have also provided insights into the reversal mechanism. Yet despite the large paleomagnetic database, controversial interpretations of records of the transitional field persist; they result from two characteristics inherent to all reversals, both of which are detrimental to an ambiguous analysis. On the one hand, the reversal process is rapid and requires adequate temporal resolution. On the other hand, weak field intensities during a reversal can affect the fidelity of magnetic recording in sedimentary records. This paper is aimed at reviewing critically the main reversal features derived from paleomagnetic records and at analyzing some of these features in light of numerical simulations. We discuss in detail the fidelity of the signal extracted from paleomagnetic records and pay special attention to their resolution with respect to the timing and mechanisms involved in the magnetization process. Records from marine sediments dominate the database. They give rise to transitional field models that often lead to overinterpret the data. Consequently, we attempt to separate robust results (and their subsequent interpretations) from those that do not stand on a strong observational footing. Finally, we discuss new avenues that should favor progress to better characterize and understand transitional field behavior.

摘要

地磁场极性倒转是地球发电机的一个主要特征。关于导致极性倒转的动力学过程以及极性转变期间地磁场的性质,仍然存在一些问题。在过去50年里,人们获取了大量古地磁极性倒转记录,以便更好地限制过渡场的结构和几何形状。此外,在过去二十年中,数值发电机模拟也为极性倒转机制提供了见解。然而,尽管有大量的古地磁数据库,但对过渡场记录的有争议的解释仍然存在;它们源于所有极性倒转所固有的两个特征,这两个特征都不利于进行模糊的分析。一方面,极性倒转过程很快,需要足够的时间分辨率。另一方面,极性倒转期间的弱场强会影响沉积记录中磁记录的保真度。本文旨在批判性地回顾从古地磁记录中得出的主要极性倒转特征,并根据数值模拟分析其中一些特征。我们详细讨论了从古地磁记录中提取的信号的保真度,并特别关注它们在磁化过程的时间和机制方面的分辨率。海洋沉积物记录在数据库中占主导地位。它们产生的过渡场模型常常导致对数据的过度解读。因此,我们试图将可靠的结果(及其后续解释)与那些没有坚实观测基础的结果区分开来。最后,我们讨论了有利于取得进展以更好地表征和理解过渡场行为的新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e45/6686389/577fe7dfc865/ROG-54-410-g001.jpg

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