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Synchronizing volcanic sedimentary and ice core records of Earth’s last magnetic polarity reversal

机译:同步地球最后一次磁极性反转的火山沉积和冰芯记录

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摘要

Reversal of Earth’s magnetic field polarity every 105 to 106 years is among the most far-reaching, yet enigmatic, geophysical phenomena. The short duration of reversals make precise temporal records of past magnetic field behavior paramount to understanding the processes that produce them. We correlate new 40Ar/39Ar dates from transitionally magnetized lava flows to astronomically dated sediment and ice records to map the evolution of Earth’s last reversal. The final 180° polarity reversal at ~773 ka culminates a complex process beginning at ~795 ka with weakening of the field, succeeded by increased field intensity manifested in sediments and ice, and then by an excursion and weakening of intensity at ~784 ka that heralds a >10 ka period wherein sediments record highly variable directions. The 22 ka evolution of this reversal suggested by our findings is mirrored by a numerical geodynamo simulation that may capture much of the naturally observed reversal process.
机译:每10 5 到10 6 年,地球磁场极性的反转是影响最深,但最神秘的地球物理现象之一。短时间的反转使过去磁场行为的精确时间记录对于理解产生它们的过程至关重要。我们将新的 40 Ar / 39 Ar日期(从过渡磁化的熔岩流到天文年代的沉积物和冰记录)关联起来,以绘制地球最后一次逆转的演变过程。最后的180°极性反转在〜773 ka处达到了一个复杂的过程,此过程始于〜795 ka,随后场减弱,其次是沉积物和冰中的场强增加,然后在〜784 ka出现偏移和强度减弱,预示着> 10 ka的时期,其中沉积物记录了高度变化的方向。我们的发现表明,这种逆转的22 ka演化反映在数值地球动力学模拟中,该模拟可以捕获许多自然观察到的逆转过程。

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