Geophysical Research Letters (Nov 2023)

Ionospheric Plasma Density Gradients Associated With Night‐Side Energetic Electron Precipitation

  • Xiao‐Jia Zhang,
  • Xing Meng,
  • Anton V. Artemyev,
  • Ying Zou,
  • Didier Mourenas

DOI
https://doi.org/10.1029/2023GL105630
Journal volume & issue
Vol. 50, no. 21
pp. n/a – n/a

Abstract

Read online

Abstract Energetic electron precipitation from the equatorial magnetosphere into the atmosphere plays an important role in magnetosphere‐ionosphere coupling: precipitating electrons alter ionospheric properties, whereas ionospheric outflows modify equatorial plasma conditions affecting electromagnetic wave generation and energetic electron scattering. However, ionospheric measurements cannot be directly related to wave and energetic electron properties measured by high‐altitude, near‐equatorial spacecraft, due to large mapping uncertainties. We aim to resolve this by projecting low‐altitude measurements of energetic electron precipitation by ELFIN CubeSats onto total electron content (TEC) maps serving as a proxy for ionospheric density structures. We examine three types of precipitation on the nightside: precipitation of 500 keV) electron precipitation by EMIC waves. All three types of precipitation show distinct features in TEC horizontal gradients, and we discuss possible implications of these features.

Keywords