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Paleointensity determination of Late Cretaceous basalts in northwest South Korea: implications for low and stable paleofield strength in the Late Cretaceous

机译:韩国西北部晚白垩世玄武岩的古强度测定:对晚白垩纪古土壤强度低而稳定的影响

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To clarify geomagnetic field behavior in the Late Cretaceous, paleointensity and rock-magnetic studies were carried out on basalts with K-Ar ages of 78.6 ± 2.5 and 73.1 ± 1.6 Ma in northwest South Korea. A total of 314 samples (262 from six lava flows and 52 from massive basalts) were subjected to Thellier-type IZZI paleointensity experiments. Through the application of seven paleointensity selection criteria that mainly verify the thermal alteration of magnetic minerals and the stability of remanence direction, fifteen paleointensity data were obtained from five of the lava flows. Based on rock-magnetic experiments and microscopic observations, it is revealed that the measured paleointensity is carried by single-domain (titano)magnetite. The site-mean paleointensities ranged 13.1-21.3 μT, which corresponds to a virtual axial dipole moment of 2.3-3.8 × 1022 Am2. The combination of this result with selected data from the IAGA paleointensity database establishes the existence of different dipole moments according to rock type. In particular, the geomagnetic field strength recorded in Late Cretaceous crystalline volcanic rock was relatively low and stable, with a mean dipole moment of 4.0 ± 1.9 × 1022 Am2 regardless of geomagnetic field reversals
机译:为了弄清白垩纪晚期的地磁场行为,在韩国西北部对K-Ar年龄分别为78.6±2.5和73.1±1.6 Ma的玄武岩进行了古强度和岩石磁研究。总共314个样品(来自6个熔岩流的262个样品和来自大量玄武岩的52个样品)进行了塞勒式IZZI古强度实验。通过应用七个主要验证磁性矿物热变质和剩磁方向稳定性的古强度选择标准,从五个熔岩流获得了十五个古强度数据。基于岩石磁实验和微观观察,揭示了所测量的古强度是由单畴(钛铁矿)磁铁矿携带的。现场平均古强度范围为13.1-21.3μT,对应于2.3-3.8×10 22 Am 2 的虚拟轴向偶极矩。将该结果与IAGA古强度数据库中的选定数据结合起来,可以根据岩石类型确定不同偶极矩的存在。特别是,晚白垩世结晶火山岩中记录的地磁场强度相对较低且稳定,无论何时,平均偶极矩均为4.0±1.9×10 22 Am 2 。地磁场反转

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