首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >A New Middle to Late Jurassic Geomagnetic Polarity Time Scale (GPTS) From a Multiscale Marine Magnetic Anomaly Survey of the Pacific Jurassic Quiet Zone
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A New Middle to Late Jurassic Geomagnetic Polarity Time Scale (GPTS) From a Multiscale Marine Magnetic Anomaly Survey of the Pacific Jurassic Quiet Zone

机译:来自太平洋侏罗纪安静区的多尺度海洋磁性异常调查的新中间至晚侏罗纪地磁极性时间尺度(GPTS)

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The Geomagnetic Polarity Time Scale (GPTS) provides a basis for the geological timescale, quantifies geomagnetic field behavior, and gives a time framework for geologic studies. We build a revised Middle to Late Jurassic GPTS by using a new multiscale magnetic profile, combining sea surface, midwater, and autonomous underwater vehicle near-bottom magnetic anomaly data from the Hawaiian lineation set in the Pacific Jurassic Quiet Zone (JQZ). We correlate the new profile with a previously published contemporaneous magnetic sequence from the Japanese lineation set. We then establish geomagnetic polarity block models as a basis for our interpretation of the origin and nature of JQZ magnetic anomalies and a GPTS. A significant level of coherency between short-wavelength anomalies for both the Japanese and Hawaiian lineation magnetic anomaly sequences suggests the existence of a regionally coherent field during this period of rapid geomagnetic reversals. Our study implies the rapid onset of the Mesozoic Dipole Low from M42 through M39 and then a subsequent gradual recovery in field strength into the Cenozoic. The new GPTS, together with the Japanese sequence, extends the magnetic reversal history from M29 back in time to M44. We identify a zone of varying, difficult-to-correlate anomalies termed the Hawaiian Disturbed Zone, which is similar to the zone of low amplitude, difficult-to-correlate anomalies in the Japanese sequence termed the Low Amplitude Zone (LAZ). We suggest that the LAZ, bounded by M39-M41 isochrons, may in fact represent the core of what is more commonly known as the JQZ crust.
机译:地磁极性时标(GPTS)为地质时标提供了基础,量化了地磁场行为,并为地质研究提供了时间框架。我们利用一个新的多尺度磁剖面,结合太平洋侏罗纪安静带(JQZ)夏威夷线理组的海面、中层和自动水下航行器近底磁异常数据,建立了一个修正的中、晚侏罗世GPT。我们将新剖面与之前公布的日本线理组同期磁序列相关联。然后,我们建立地磁极性块体模型,作为解释JQZ磁异常和GPT起源和性质的基础。日本和夏威夷线理磁异常序列的短波异常之间的显著相干水平表明,在这一快速地磁反转期间,存在区域相干场。我们的研究表明,从M42到M39,中生代偶极低压迅速开始,随后磁场强度逐渐恢复到新生代。新的GPT与日本序列一起,将磁反转历史从M29追溯到M44。我们确定了一个不同的、难以关联的异常带,称为夏威夷扰动带,类似于日本层序中的低振幅、难以关联的异常带,称为低振幅带(LAZ)。我们认为,以M39-M41等时线为界的LAZ实际上可能代表更常见的JQZ地壳的核心。

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