4.7 Article

Patchy Proton Aurora at Mars: A Global View of Solar Wind Precipitation Across the Martian Dayside From EMM/EMUS

期刊

GEOPHYSICAL RESEARCH LETTERS
卷 49, 期 17, 页码 -

出版社

AMER GEOPHYSICAL UNION
DOI: 10.1029/2022GL099881

关键词

Mars; aurora; radial IMF

资金

  1. UAE government
  2. KU-CU-LASP Space Science [8474000332]
  3. NASA

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Multiple definitive observations of localized patchy proton aurora at Mars are reported in this study, along with the characterization of the plasma environment using measurements from other missions. Multiple mechanisms are required to explain these observations, and further research is needed to understand the impact of these auroral events on Mars atmospheric evolution.
Proton aurora at Mars are thought to form indirectly, as a result of solar wind proton charge exchange with planetary coronal hydrogen upstream of the bow shock. This charge exchange produces beamed energetic neutral atoms that bypass the induced magnetosphere and cause spatially uniform auroral emission when they collide with the thermosphere. Here we report multiple definitive observations of spatially localized patchy proton aurora at Mars using the Emirates Mars Ultraviolet Spectrometer on the Emirates Mars Mission, and characterize the plasma environment during these events using contemporaneous Mars Atmosphere and Volatile EvolutioN mission measurements. Multiple mechanisms are required to explain these observations, including at times the direct deposition of solar wind plasma into the thermosphere, particularly during radial interplanetary magnetic field conditions. Much future work will be needed to assess these mechanisms and understand the impact of these auroral events on Mars atmospheric evolution.

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