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地球偶极的变化。

Changes in earth's dipole.

作者信息

Olson Peter, Amit Hagay

机构信息

Department of Earth and Planetary Sciences, Johns Hopkins University, Baltimore, MD, USA.

出版信息

Naturwissenschaften. 2006 Nov;93(11):519-42. doi: 10.1007/s00114-006-0138-6. Epub 2006 Aug 17.

Abstract

The dipole moment of Earth's magnetic field has decreased by nearly 9% over the past 150 years and by about 30% over the past 2,000 years according to archeomagnetic measurements. Here, we explore the causes and the implications of this rapid change. Maps of the geomagnetic field on the core-mantle boundary derived from ground-based and satellite measurements reveal that most of the present episode of dipole moment decrease originates in the southern hemisphere. Weakening and equatorward advection of normal polarity magnetic field by the core flow, combined with proliferation and growth of regions where the magnetic polarity is reversed, are reducing the dipole moment on the core-mantle boundary. Growth of these reversed flux regions has occurred over the past century or longer and is associated with the expansion of the South Atlantic Anomaly, a low-intensity region in the geomagnetic field that presents a radiation hazard at satellite altitudes. We address the speculation that the present episode of dipole moment decrease is a precursor to the next geomagnetic polarity reversal. The paleomagnetic record contains a broad spectrum of dipole moment fluctuations with polarity reversals typically occurring during dipole moment lows. However, the dipole moment is stronger today than its long time average, indicating that polarity reversal is not likely unless the current episode of moment decrease continues for a thousand years or more.

摘要

根据古地磁测量结果,在过去150年里,地球磁场的偶极矩下降了近9%,在过去2000年里下降了约30%。在此,我们探讨这种快速变化的原因及其影响。通过地面和卫星测量得出的地核-地幔边界处的地磁场图显示,当前偶极矩下降的大部分情况起源于南半球。地核流动对正常极性磁场的削弱和向赤道方向的平流,再加上磁极性反转区域的扩散和增长,正在降低地核-地幔边界处的偶极矩。这些反向通量区域的增长在过去一个世纪或更长时间内一直在发生,并且与南大西洋异常区的扩张有关,南大西洋异常区是地磁场中的一个低强度区域,在卫星高度会带来辐射危害。我们探讨了当前偶极矩下降是下一次地磁极性反转的前兆这一推测。古地磁记录包含了偶极矩波动的广泛频谱,极性反转通常发生在偶极矩低值期间。然而,如今的偶极矩比其长期平均值更强,这表明除非当前的矩下降情况持续一千年或更长时间,否则极性反转不太可能发生。

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