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A corotation electric field model of the Earth derived fromSwarm satellite magnetic field measurements

机译:地球源自卫星磁场测量的地球电气场模型

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Rotation of the Earth in its own geomagnetic field sets up a primary corotation electric field, compensated by a secondary electric field of induced electrical charges. For the geomagnetic field measured by the Swarm constellation of satellites, a derivation of the global corotation electric field inside and outside of the corotation region is provided here, in both inertial and corotating reference frames. The Earth is assumed an electrical conductor, the lower atmosphere an insulator, followed by the corotating ionospheric E region again as a conductor. Outside of the Earth's core, the induced charge is immediately accessible from the spherical harmonic Gauss coefficients of the geomagnetic field. The charge density is positive at high northern and southern latitudes, negative at midlatitudes, and increases strongly toward the Earth's center. Small vertical electric fields of about 0.3 mV/m in the insulating atmospheric gap are caused by the corotation charges located in the ionosphere above and the Earth below. The corotation charges also flow outward into the region of closed magnetic field lines, forcing the plasmasphere to corotate. The electric field of the corotation charges further extends outside of the corotating regions, contributing radial outward electric fields of about 10 mV/m in the northern and southern polar caps. Depending on how the magnetosphere responds to these fields, the Earth may carry a net electric charge.
机译:地球在其自身的地磁场旋转设置了一个主要的刻录电场,由诱导电荷的二次电场补偿。对于通过卫星的群星测量的地磁场,这里包括惯性和卡定参考框架的全球光学电场内外的全局光学电场的推导。地球被假设导电体,下层气氛是绝缘体,其次是作为导体再次作为导体。在地球的核心之外,诱导的电荷可以从地磁场的球形谐波高斯系数访问。电荷密度在高北部和南部纬度的阳性,在中间人阴性阴性,并强烈向地球中心增加。绝缘大气间隙中约0.3 mV / m的小垂直电场是由位于上方和地球的电离层中的刻录电荷引起的。刻录物电荷还向外流入封闭磁场线的区域,迫使寄射到芯片。刻录电荷的电场进一步延伸到北部和南极帽中的径向向外电场约为10mV / m。根据磁极层的响应方式,地球可以携带净电荷。

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