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Millennial variations of the geomagnetic field: From data recovery to field reconstruction

机译:地磁场的千禧年变化:从数据恢复到磁场重建

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Variations of the geomagnetic field over past millennia can be determined from archeomagnetic data and paleomagnetic sediment records. The resolution and validity of any field reconstruction depends on the reliability of such indirect measurements of past field values. Considerable effort is invested to ensure that the magnetic minerals carrying the ancient magnetization are good, if not ideal, recorders of the magnetic field. This is achieved by performing a wide array of rock magnetic and microscopy investigations, many of which are outlined here. In addition to data quality, the spatial and temporal distributions of archeomagnetic and sediment records play a significant role in the accuracy of past field reconstruction. Global field reconstructions enable studies of dynamic processes in Earth's core. They rely on data compilations which ideally include information about the quality of a measurement and provide a useful archive for selecting data with the best characteristics. There is, however, a trade off between the total number of reliable data and the geographic or temporal coverage. In this review we describe the various types of paleomagnetic recorders, and the kind of measurements that are performed to gather reliable geomagnetic field information. We show which modeling strategies are most suitable, and the main features of the field that can be derived from the resulting models. Finally, we discuss prospects for progress in this kind of research.
机译:过去几千年来的地磁场变化可以从古地磁数据和古磁沉积记录中确定。任何场重建的分辨率和有效性取决于过去场值的这种间接测量的可靠性。为确保带有古老磁化强度的磁性矿物(即使不是理想的),它付出了巨大的努力,才能很好地记录磁场。这是通过进行各种岩石磁学和显微镜检查来实现的,在此概述了其中的许多内容。除了数据质量外,地磁和沉积物记录的时空分布在过去田野重建的准确性中也起着重要作用。全球现场重建可以研究地球核心的动态过程。他们依靠数据汇编,理想情况下包括有关测量质量的信息,并为选择具有最佳特性的数据提供有用的存档。但是,在可靠数据的总数与地理或时间范围之间需要权衡取舍。在这篇综述中,我们描述了各种类型的古磁记录仪,以及为收集可靠的地磁场信息而进行的测量的种类。我们将说明最适合的建模策略,以及可以从所得模型中得出的领域的主要特征。最后,我们讨论了这种研究的进展前景。

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