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Plasma acceleration above martian magnetic anomalies.

机译:火星磁异常上方的等离子加速度。

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Auroras are caused by accelerated charged particles precipitating along magnetic field lines into a planetary atmosphere, the auroral brightness being roughly proportional to the precipitating particle energy flux. The Analyzer of Space Plasma and Energetic Atoms experiment on the Mars Express spacecraft has made a detailed study of acceleration processes on the nightside of Mars. We observed accelerated electrons and ions in the deep nightside high-altitude region of Mars that map geographically to interface/cleft regions associated with martian crustal magnetization regions. By integrating electron and ion acceleration energy down to the upper atmosphere, we saw energy fluxes in the range of 1 to 50 milliwatts per square meter per second. These conditions are similar to those producing bright discrete auroras above Earth. Discrete auroras at Mars are therefore expected to be associated with plasma acceleration in diverging magnetic flux tubes above crustal magnetization regions, the auroras being distributed geographically in a complex pattern by the many multipole magnetic field lines extending into space.
机译:极光是由加速的带电粒子沿着磁场线沉淀到行星大气中引起的,极光亮度与沉淀的粒子能量通量大致成正比。在火星快车上进行的空间等离子体和高能原子分析仪实验对火星夜间的加速过程进行了详细研究。我们在火星的深夜高海拔地区观察到加速的电子和离子,这些电子和离子在地理上映射到与火星地壳磁化区域相关的界面/裂缝区域。通过将电子和离子加速能量整合到高层大气中,我们看到了每秒1到50毫瓦/平方米的能量通量。这些条件类似于在地球上方产生明亮的离散极光的条件。因此,预计在火星上离散的极光将与地磁化区域上方发散的磁通管中的等离子体加速度相关联,极光通过许多伸入太空的多极磁场线以复杂的方式在地理上分布。

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