Xu Shaosui, Poppe Andrew R, Halekas Jasper S, Harada Yuki
Space Sciences Laboratory, University of California, Berkeley, CA, USA.
Department of Physics and Astronomy, University of Iowa, Iowa City, IA, USA.
J Geophys Res Space Phys. 2020 Jul;125(7). doi: 10.1029/2020ja028154. Epub 2020 Jun 7.
The refilling of the lunar wake is facilitated by the wake ambipolar electric potential arising from the electron pressure gradient. Incident solar wind protons can be reflected by the lunar crustal magnetic fields and the lunar surface on the dayside and repicked up, entering the lunar wake due to their large gyroradii. This burst of positive charges can cause the lunar wake potential to be reduced by hundreds of volts. We utilize over 7 years of ARTEMIS (Acceleration, Reconnection, Turbulence, and Electrodynamics of the Moon's Interaction with the Sun) measurements to systematically investigate how the reflected protons affect the lunar wake potential structure when the Moon is immersed in the solar wind. RPs have a peak occurrence rate of ~20% for downstream distances from the Moon at × 2 and a preference of high occurrence rates and high densities in the direction of the motional electric field of the solar wind. We show that reflected protons in the lunar wake can significantly change the electrostatic ambipolar potentials in the wake, leading in turn to the formation of field-aligned, accelerated electron beams. Our case study also suggests a nonmonotonic field-aligned potential structure in the presence of reflected protons in the wake. Lastly, our results show that when the reflected proton density is larger than ~30% of the local proton density from refilling solar wind protons, the wake potential scales as the logarithmic density of reflected protons, which can be explained by the Boltzmann relation.
由电子压力梯度产生的尾流双极电势有助于月球尾流的再填充。入射太阳风质子在月昼侧可被月壳磁场和月球表面反射并重新被捕获,由于其较大的回旋半径而进入月球尾流。这种正电荷的爆发可使月球尾流电势降低数百伏。我们利用超过7年的ARTEMIS(月球与太阳相互作用的加速、重联、湍流和电动力学)测量数据,系统地研究当月球沉浸在太阳风中时,反射质子如何影响月球尾流电势结构。对于月球下游距离为×2处,反射质子的峰值发生率约为20%,并且在太阳风运动电场方向上具有高发生率和高密度的偏好。我们表明,月球尾流中的反射质子可显著改变尾流中的静电双极电势,进而导致场向加速电子束的形成。我们的案例研究还表明,在尾流中存在反射质子的情况下,存在非单调的场向电势结构。最后,我们的结果表明,当反射质子密度大于再填充太阳风质子的当地质子密度的约30%时,尾流电势随反射质子的对数密度变化,这可以用玻尔兹曼关系来解释。