Institut für Geophysik und extraterrestrische Physik, Technische Universität, Braunschweig, Germany.
Science. 2011 Dec 23;334(6063):1690-3. doi: 10.1126/science.1207290.
The observed weakness of Mercury's magnetic field poses a long-standing puzzle to dynamo theory. Using numerical dynamo simulations, we show that it could be explained by a negative feedback between the magnetospheric and the internal magnetic fields. Without feedback, a small internal field was amplified by the dynamo process up to Earth-like values. With feedback, the field strength saturated at a much lower level, compatible with the observations at Mercury. The classical saturation mechanism via the Lorentz force was replaced by the external field impact. The resulting surface field was dominated by uneven harmonic components. This will allow the feedback model to be distinguished from other models once a more accurate field model is constructed from MErcury Surface, Space ENvironment, GEochemistry, and Ranging (MESSENGER) and BepiColombo data.
水星磁场的观测到的弱点对发电机理论提出了长期存在的难题。通过数值发电机模拟,我们表明,它可以通过磁层和内部磁场之间的负反馈来解释。没有反馈,小的内部场被发电机过程放大到类似地球的值。有了反馈,场强在低得多的水平上饱和,与水星的观测结果相兼容。通过洛伦兹力的经典饱和机制被外部场的影响所取代。由此产生的表面场主要由不均匀的谐波分量组成。一旦从 MErcury Surface、Space ENvironment、GEochemistry 和 Ranging (MESSENGER) 和 BepiColombo 数据构建出更精确的磁场模型,这种反馈模型就可以与其他模型区分开来。