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首页> 外文期刊>Geophysical Research Letters >First observation of a mini-magnetosphere above a lunar magnetic anomaly using energetic neutral atoms
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First observation of a mini-magnetosphere above a lunar magnetic anomaly using energetic neutral atoms

机译:使用高能中性原子对月球磁异常上方的微磁层的首次观测

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摘要

[1] The Sub-keV Atom Reflecting Analyzer (SARA) instrument on the Indian Chandrayaan-1 spacecraft has produced for the first time an image of a lunar magnetic anomaly in backscattered hydrogen atoms. The image shows that a partial void of the solar wind, a mini-magnetosphere, is formed above the strong magnetic anomaly near the Crisium antipode. The mini-magnetosphere is 360 km across at the surface and is surrounded by a 300-km-thick region of enhanced plasma flux that results from the solar wind flowing around the mini-magnetosphere. The mini-magnetosphere is visible only in hydrogen atoms with energy exceeding 150 eV. Fluxes with energies below 100 eV do not show corresponding spatial variations. While the high-energy atoms result from the backscattering process, the origin of the low-energy component is puzzling. These observations reveal a new class of objects, mini-magnetospheres, and demonstrate a new observational technique to study airless bodies, imaging in backscattered neutral atoms.
机译:[1]印度Chandrayaan-1航天器上的Sub-keV原子反射分析仪(SARA)仪器首次产生了反向散射氢原子中月球磁异常的图像。该图显示,在Crisium对映体附近的强磁异常之上,形成了太阳风的一部分空隙,即微型磁层。微型磁层的表面跨过360公里,周围环绕着300公里厚的增强的等离子体通量区域,该区域是由围绕微型磁层流动的太阳风产生的。微型磁层仅在能量超过150 eV的氢原子中可见。能量低于100 eV的通量没有显示出相应的空间变化。虽然高能原子是由反向散射过程产生的,但低能成分的起源却令人困惑。这些观测揭示了新的一类物体,即微型磁层,并展示了一种新的观测技术,用于研究无空气的物体,在反向散射的中性原子中成像。

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