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来自U型通道的古地磁记录是否适用于反转和偏移研究?

Are Paleomagnetic Records From U-Channels Appropriate for Studies of Reversals and Excursions?

作者信息

Philippe Édouard G H, Valet Jean-Pierre, St-Onge Guillaume, Thevarasan Anojh

机构信息

Institut de Physique du Globe de Paris Paris France.

Institut des sciences de la mer de Rimouski, Canada Research Chair in Marine Geology and GEOTOP Université du Québec à Rimouski Rimouski Quebec Canada.

出版信息

Geochem Geophys Geosyst. 2018 Nov;19(11):4130-4142. doi: 10.1029/2018GC007803. Epub 2018 Nov 5.

Abstract

Sampling of sediment cores using plastic U-channels has made possible the acquisition of detailed records of paleomagnetic secular variation, geomagnetic polarity, environmental magnetic studies, and relative paleointensity over the past several million years. U-channel measurements provide the great advantage of rapid measurements of long sediment cores, but the signal resolution is attenuated by the response function of the magnetometer sensors, which therefore restrains the recovery of rapid and large-amplitude field changes. Here we focus on the suitability of the dynamics of reversals and excursions derived from U-channel measurements. We compare successive individual paleomagnetic directions of 1.5 cm × 1.5 cm × 1.5 cm cubic discrete samples with those of a 1.5-m equivalent U-channel sample train obtained by placing the samples adjacent to each other. We use varying excursion and transition lengths and generate transitional directions that resemble those of the most detailed paleomagnetic records. Excursions with opposite polarity directions recorded over less than 7.5 cm are barely detected in U-channel measurements. Regarding reversals, U-channel measurements smooth the signal of low-resolution records and generate artificial transitional directions. Despite producing misleading similarities with the overall structure of transition records, longer transitional intervals fail also to reproduce the complexity of field changes. Finally, we test the convolution of magnetization by different response functions. The simulation reveals that even small response function changes can generate significant differences in results.

摘要

使用塑料U型槽对沉积物岩芯进行采样,使得获取过去几百万年古地磁长期变化、地磁极性、环境磁学研究以及相对古强度的详细记录成为可能。U型槽测量具有快速测量长沉积物岩芯的巨大优势,但信号分辨率会因磁力仪传感器的响应函数而衰减,因此限制了对快速且大幅度磁场变化的恢复。在此,我们关注从U型槽测量得出的反转和偏移动力学的适用性。我们将1.5厘米×1.5厘米×1.5厘米立方体离散样本的连续单个古地磁方向与通过将样本彼此相邻放置而获得的1.5米等效U型槽样本序列的古地磁方向进行比较。我们使用不同的偏移和转变长度,并生成类似于最详细古地磁记录的转变方向。在U型槽测量中,长度小于7.5厘米的具有相反极性方向的偏移几乎无法检测到。关于反转,U型槽测量会平滑低分辨率记录的信号并产生人为的转变方向。尽管与转变记录的整体结构产生了误导性的相似性,但较长的转变间隔也无法再现磁场变化的复杂性。最后,我们测试不同响应函数对磁化的卷积。模拟结果表明,即使响应函数的微小变化也会在结果中产生显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e25e/6360451/01a61cc4fdd7/GGGE-19-4130-g001.jpg

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