首页> 外文期刊>Icarus: International Journal of Solar System Studies >Kaguya observations of the lunar wake in the terrestrial foreshock: Surface potential change by bow-shock reflected ions
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Kaguya observations of the lunar wake in the terrestrial foreshock: Surface potential change by bow-shock reflected ions

机译:Kaguya观察陆地留言的月尾:弓形冲击反射离子的表面潜在变化

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There forms a tenuous region called the wake behind the Moon in the solar wind, and plasma entry/refilling into the wake is a fundamental problem of the lunar plasma science. High-energy ions and electrons in the foreshock of the Earth's magnetosphere were detected at the lunar surface in the Apollo era, but their effects on the lunar night-side environment have never been studied. Here we show the first observation of bow-shock reflected protons by Kaguya (SELENE) spacecraft in orbit around the Moon, confirming that solar wind plasma reflected at the terrestrial bow shock can easily access the deepest lunar wake when the Moon stays in the foreshock (We name this mechanism type-3 entry'). In a continuous type-3 event, low-energy electron beams from the lunar night-side surface are not obvious even though the spacecraft location is magnetically connected to the lunar surface. On the other hand, in an intermittent type-3 entry event, the kinetic energy of upward-going field-aligned electron beams decreases from similar to 80 eV to similar to 20 eV or electron beams disappear as the bow-shock reflected ions come accompanied by enhanced downward electrons. According to theoretical treatment based on electric current balance at the lunar surface including secondary electron emission by incident electron and ion impact, we deduce that incident ions would be accompanied by a few to several times higher flux of an incident electron flux, which well fits observed downward fluxes. We conclude that impact by the bow-shock reflected ions and electrons raises the electrostatic potential of the lunar night-side surface. (C) 2017 Elsevier Inc. All rights reserved.
机译:在太阳风中形成了一个尖叫的地区,称为月亮后面的醒来,并等离子体入口/重新填充到苏醒中是月球血浆科学的根本问题。在阿波罗时代的月球表面检测到地球磁层的磁性影片前磁性的高能离子和电子,但它们对农历夜间环境的影响从未被研究过。在这里,我们展示了Kaguya(Selene)在月球上的轨道上的弓形冲击反射质子的第一次观察,确认在陆地弓震中反映的太阳能等离子体可以很容易地在月球停留在挡嘴(我们命名这个机制类型-3条目')。在连续的3型事件中,即使航天器位置磁性连接到月球表面,来自月球夜间表面的低能量电子束也不明显。另一方面,在间歇式-3进入事件中,向上去的场对准电子束的动能从类似于80eV类似于20eV,而20eV或电子束消失,因为弓形冲击反射离子伴随着通过增强的向下电子。根据基于电风电流平衡的理论治疗,包括通过入射电子和离子撞击的二级电子发射,我们推断出事件离子将伴随着入射电子磁通量的额外通量的几倍,这很适合观察到向下助势。我们得出结论,弓形冲击反射离子和电子的影响提高了月球夜间表面的静电潜力。 (c)2017年Elsevier Inc.保留所有权利。

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