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Laboratory investigation of lunar surface electric potentials in magnetic anomaly regions

机译:磁异常地区月球表面电势的实验室研究

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To gain insight into lunar surface charging in the magnetic anomaly regions, we present the results of laboratory experiments with a flowing plasma engulfing a magnetic dipole field above an insulating surface. When the dipole moment is perpendicular to the surface, large positive potentials (close to ion flow energies in eV) are measured on the surface in the dipole lobe regions, charged by the unmagnetized ions while the electrons are magnetically excluded. The potential decreases exponentially with distance from the surface on the ion (flow) Debye length scale. The surface potentials become much smaller when the dipole moment is parallel to the surface, likely due to collisionality. We discuss the implications of our laboratory results for the lunar surface charging in the magnetic anomaly regions, suggesting that the surface potential may be much higher than the generally expected several volts positive due to photoemission.
机译:为了深入了解磁异常区域中的月球表面电荷,我们提出了在流动等离子体吞噬绝缘表面上方的磁偶极子场的实验室实验结果。当偶极矩垂直于表面时,在偶极子波瓣区域的表面上会测量到较大的正电势(接近eV中的离子流能),该正电势由未磁化的离子充电,而电子被磁性排斥。电势随着离离子(流动)德拜长度标度上距表面的距离呈指数下降。当偶极矩平行于表面时,表面电势会变小,这很可能是由于碰撞引起的。我们讨论了我们的实验室结果对磁异常区域中月球表面电荷的影响,这表明由于光发射,表面电势可能比通常预期的几伏正电压高得多。

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