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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Archeomagnetic dating of Mediterranean volcanics of the last 2100 years: validity and limits
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Archeomagnetic dating of Mediterranean volcanics of the last 2100 years: validity and limits

机译:过去2100年地中海火山的古地磁年代测定:有效性和局限性

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Archeomagnetic dating developed at St. Maur laboratory has been applied to the Mediterranean volcanoes Etna, Vesuvius and Ischia. the method involves samples from lava flows or high temperature emplaced pyroclasts (welded scoriae, pumice, etc.) weighing 0.5-1 kg each, that allows reaching a precision of a few tenths of a degree on the direction of their thermoremanent magnetization, and hence a semi-angle of the Fisher 95% confidence cone between 0.6 and 1.8° for every volcanic unit. Among the factors reducing precision on the mean magnetic direction, the most important appears to be a distortion of the ambient field induced by magnetization of the cooling lava, which means that a number of samples should be collected over a large area. Age determination is based upon similarity between variation curves of the Direction of Earth's Magnetic Field (DEMF) reconstructed in France from 120 well-dated archeological sites, and on Italian volcanoes from historically dated eruptions. A total of 63 lava flows and pyroclastic units, such as cinder cones or nuee ardente deposits, are shown to be dated with an overall precision of ±40 years for the last 1500 years, and ±50 to ±100 years from AD 500 to 150 BC, this lesser precision resulting from both an increasing uncertainty on the shape of the DEMF curve and a smaller variation of the DEMF itself. This irregularity of the DEMF path plus an increasing number of ambiguities, related to similarity of the DEMF at different times further into the past, are the most serious limitations of the method. though well-dated eruptions are known for the last two millennia, retrieval of their products is often misleading and about 50% of volcanics presumed of known date prior to the 17th century are in fact of older age, discrepancies usually reaching several hundreds of years. Owing to good agreement between the DEMF curves of France and southern Italy, the method may confidently be extended to volcanic materials from the whole of Mediterranean Europe, provided there are firm constraints that they were erupted within the last 2100 years.±±
机译:圣莫尔实验室开发的地磁测年法已应用于地中海火山埃特纳火山,维苏威火山和伊斯基亚火山。该方法涉及熔岩流或高温放置的火山碎屑(焊接的火山灰,浮石等)的样品,每个样品重0.5-1 kg,这使得沿其热剩磁方向的精度达到十分之一度,因此每个火山单元的费舍尔95%置信锥的半角在0.6至1.8°之间。在降低平均磁方向精度的因素中,最重要的似乎是冷却熔岩的磁化引起的周围磁场的畸变,这意味着应该在大面积上收集大量样本。年龄的确定基于法国从120个良好的考古遗址重建的地球磁场方向(DEMF)的变化曲线之间的相似性,以及根据历史喷发的意大利火山的相似度。据显示,总共有63个熔岩流和火山碎屑单元(例如煤渣锥或nuee ardente沉积物)的总精度在过去1500年中为±40年,在AD 500至150年中为±50至±100年。 BC,这种较低的精度是由于DEMF曲线形状的不确定性增加和DEMF本身的变化较小所致。 DEMF路径的这种不规则性加上越来越多的歧义,与在更远的过去不同时间的DEMF的相似性有关,是该方法的最严重局限。尽管在过去的两千年中人们知道火山喷发的时间很长,但其产品的回收通常会产生误导作用,并且在已知的17世纪之前的火山中,约有50%实际上年龄较大,差异通常达到数百年。由于法国和意大利南部的DEMF曲线之间的一致性,该方法可以放心地扩展到整个地中海欧洲的火山岩材料,前提是在过去2100年内爆发了这些火山岩。

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