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A model for the geomagnetic field reversal rate and constraints on the heat flux variations at the core-mantle boundary

机译:地磁场逆转速率的模型及核心地幔边界热通量变化的约束

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A striking feature of many natural magnetic fields generated by dynamo action is the occurrence of polarity reversals. Paleomagnetic measurements revealed that the Earth’s magnetic field has been characterised by few hundred stochastic polarity switches during its history. The rate of reversals changes in time, maybe obeying some underlying regular pattern. While chaotic dynamical systems can describe the short-term behaviour of the switches of the Earth’s magnetic polarity, modelling the long-term variations of the reversal rate is somewhat problematic, as they occur on timescales of tens to hundreds of millions of years, of the order of mantle convection timescales. By investigating data of geomagnetic reversal rates, we find the presence of cycles with variable frequency and show that the transition towards periods where reversals do not occur for tens of million years (superchrons) can be described by a second-order phase transition that we interpret to be driven by variations of the heat flux at the core-mantle boundary (CMB). The model allows us to extract from the reversal sequence quantitative information on the susceptibility of the reversal rate caused by changes in the CMB heat flux amplitude, thus providing direct information on the deep inner layers of the Earth.
机译:由发电机动作产生的许多天然磁场的引人注目是极性逆转的发生。古磁性测量揭示了地球磁场在其历史中表征了几百个随机极性开关。逆转率随时间变化,也许遵守一些潜在的常规模式。虽然混沌动态系统可以描述地球磁极性开关的短期行为,但是建模逆转率的长期变化有些问题,因为它们发生在数十万千年上的时间尺寸地幔对流时间尺度的顺序。通过调查地磁反转速率的数据,我们发现具有可变频率的周期的存在,并表明,在我们解释的二阶阶段转换中可以描述逆转时间(超级高档)的转换。我们解释的二阶阶段转换通过芯 - 地幔边界(CMB)处的热通量的变化驱动。该模型允许我们从反转序列定量信息中提取关于由CMB热通量幅度的变化引起的逆转率的易感性,从而在地球的深内层提供直接信息。

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