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Observations of aurorae by SPICAM ultraviolet spectrograph on board Mars Express: Simultaneous ASPERA-3 and MARSIS measurements

机译:观察SPICAM紫外线的极光摄谱仪上火星快车:同步ASPERA-3和马西人测量

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We present a new set of observations of Martian aurorae obtained by Spectroscopy for the Investigation of the Characteristics of the Atmosphere of Mars (SPICAM) on board Mars Express (MEX). Using nadir viewing, several auroral events have been identified on the Martian nightside, all near regions of crustal magnetic fields. For most of these events, two to three consecutive events with variable intensities and separated by a few seconds to several tens of seconds have been observed, whereas simultaneous observations with Mars Advanced Radar for Subsurface and Ionosphere Sounding (MARSIS) and Analyzer of Space Plasma and Energetic Atoms (ASPERA-3) have been possible. In this paper, we present the data set for these events and discuss the possible correlation between the measured UV emission by SPICAM, the measured downward and/or upward flux of electrons by ASPERA-3 and the total electron content recorded by MARSIS. Despite the limited coverage of SPICAM ultraviolet spectrograph (UVS) on the Martian nightside (essentially in regions of high crustal magnetic fields), there is however a very good correlation between the regions with the locally smallest probability to be on closed crustal magnetic field lines, as derived from Mars Global Surveyor/Electron Reflectometer (MGS/MAG-ER), and the position of an aurora event. This suggests that the crustal magnetic fields, when organized into cusp-like structure, can trigger the few aurorae identified by SPICAM UVS. It confirms also the good probability, in the cases where SPICAM UVS measured UV emissions, that the increase in the measured total electron content by MARSIS and the simultaneous measured precipitating electron flux by the ASPERA-3/Electron Spectrometer may be related to each other.
机译:我们提出一套新的观测火星极光由光谱获得的调查的特点火星大气(SPICAM)火星快车(墨西哥人)。火星上的事件已确定阴面,附近地区的地壳磁场字段。连续可变强度和事件相隔几秒钟到几数万秒已被观察到,而同步与火星先进雷达观测地下和电离层(马西人)和分析仪的空间等离子体原子和充满活力(ASPERA-3)是不可能的。这些事件和讨论的数据集可能的相关性测量紫外线SPICAM排放的测量和/或下降由ASPERA-3和向上的电子通量总电子含量由马西人记录。尽管SPICAM有限覆盖紫外光谱仪(uv)在火星阴面(实质上是高地壳的地区磁场),但是有一个很好在本地的区域之间的相关性最小的概率在封闭的地壳磁场线,来自火星全球验船师/电子反射计(毫克/ MAG-ER)一个极光事件的位置。地壳磁场,当组织到cusp-like结构,可以触发极光被SPICAM uv。还好概率,在的情况下SPICAM UV测紫外线排放,增加测量总电子含量由马西人和同时测量沉淀的电子通量ASPERA-3 /电子谱仪可能有关对方。

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