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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Energy Flux and Characteristic Energy of Electrons Over Jupiter's Main Auroral Emission
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Energy Flux and Characteristic Energy of Electrons Over Jupiter's Main Auroral Emission

机译:能量流和电子的能量特征在木星的主要极光发射

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摘要

Jupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar system, are caused by energetic electrons precipitating from the magnetosphere into the atmosphere where they excite the molecular hydrogen. Previous studies focused on case analyses and/or greater than 30-keV energy electrons. Here for the first time we provide a comprehensive evaluation of Jovian auroral electron characteristics over the entire relevant range of energies (~100 eV to ~1 MeV). The focus is on the first eight perijoves providing a coarse but complete System III view of the northern and southern auroral regions with corresponding UV observations. The latest magnetic field model JRM09 with a current sheet model is used to map Juno's magnetic foot point onto the UV images and relate the electron measurements to the UV features. We find a recurring pattern where the 3- to 30-keV electron energy flux peaks in a region just equatorward of the main emission. The region corresponds to a minimum of the electron characteristic energy (100-keV electrons contribute to most (>~70-80%) of the total downward energy flux and the characteristic energy is usually around 100 keV or higher. We examine the UV brightness per incident energy flux as a function of characteristic energy and compare it to expectations from a model.
机译:木星的紫外线(UV)极光,最强大的和强烈的太阳系中,高能电子造成的沉淀他们的磁气圈到大气中激发分子氢。侧重于案例分析和/或大于30-keV能源电子。我们提供一个威风凛凛的综合评价在整个极光电子特征相关的能量范围(1 ~ 100 eV ~兆电子伏)。重点是第一个八perijoves提供一个粗但第三完整的系统的观点北部和南部的极光的地区相应的紫外线观测。磁场与电流模型JRM09表模型用于地图朱诺的磁脚点在紫外图像和相关电子测量紫外线功能。3 - 30-keV电子循环模式能量流峰值朝赤道方向的一个地区主要的排放。最低电子的能量特征( 100 kev电子贡献最大(> ~ 70 - 80%)的总能量通量和下降特征能量通常是100左右凯文或更高。入射能量通量的函数能源和特点比较期望从一个模型。

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