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Climatic influence in NRM and ~(10)Be-derived geomagnetic paleointensity data

机译:气候变化对NRM和〜(10)Be地磁古强度数据的影响

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摘要

One can determine geomagnetic paleointensities from natural remanent magnetizations (NRM) and by inverting production rates of cosmogenic isotopes such as ~(10)Be and ~(14)C. Recently, two independently derived 200-kyr stacks [Y. Guyodo, J.-P. Valet, Relative variations in geomagnetic intensity from sedimentary records: the past 200,000 years, Earth Planet. Sci. Lett. 143 (1996) 23-36; M. Frank, B. Schwarz, S. Baumann, P.W. Kubik, M. Suter, A. Mangini, A 200 kyr record of cosmogenic radionuclide production rate and geomagnetic field intensity from ~(10)Be in globally stacked deep-sea sediments, Earth Planet. Sci. Lett. 149 (1997) 121-129] were compared and the good agreement was suggested to validate the use of sedimentary cores for studies. Both compilations use mainly the astronomically forced and climatically controlled oxygen isotope stratigraphy to date and synchronize the sedimentary records, while this very curve has several coherent features with the supposedly pure geomagnetic records. An NRM relative paleointensity record, which was included in the conventional paleointensity stack, shows correspondence with climatic features, which is explained by an inadequacy in the normalization technique. Therefore, it is possible that the extraction of the pure paleointensity signal from marine sediments has not always been accomplished.
机译:可以通过自然剩余磁化强度(NRM)以及通过反转宇宙成因同位素(例如〜(10)Be和〜(14)C)的生产率来确定地磁古强度。最近,两个独立推导的200 kyr烟囱[Y. Guyodo,J.-P.代客,来自沉积记录的地磁强度的相对变化:过去20万年,地球行星。科学来吧143(1996)23-36; M.Frank,B.Schwarz,S.Baumann,P.W。库比(Kubik,M.Suter),曼格尼(A.Mangini),记录了200年的宇宙成因放射性核素生产速率和地磁场强度,记录了〜(10)Be在全球堆积的深海沉积物中的地球行星。科学来吧149(1997)121-129]进行了比较,并提出了良好的协议,以验证使用沉积岩心进行研究。迄今为止,这两种汇编都主要使用了天文学强迫和气候控制的氧同位素地层学,并使沉积记录同步,而这条曲线与所谓的纯地磁记录具有一些连贯的特征。常规古强度堆栈中包含的NRM相对古强度记录显示了与气候特征的对应关系,这可以通过归一化技术的不足来解释。因此,有可能并非总是能够从海洋沉积物中提取纯古强度信号。

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