English

Spatial variations of low mass negative ions in Titan's upper atmosphere

Earth and Planetary Astrophysics 2021-02-12 v1 Space Physics

Abstract

Observations with Cassini's Electron Spectrometer discovered negative ions in Titan's ionosphere, at altitudes between 1400 and 950 km. Within the broad mass distribution extending up to several thousand amu, two distinct peaks were identified at 25.8-26.0 and 49.0-50.1 amu/q, corresponding to the carbon chain anions CNCN^- and/or C2HC_2H^- for the first peak and C3NC_3N^- and/or C4HC_4H^- for the second peak. In this study we present the spatial distribution of these low mass negative ions from 28 Titan flybys with favourable observations between 26 October 2004 and 22 May 2012. We report a trend of lower densities on the night side and increased densities up to twice as high on the day side at small solar zenith angles. To further understand this trend, we compare the negative ion densities to the total electron density measured by Cassini's Langmuir Probe. We find the low mass negative ion density and the electron density to be proportional to each other on the dayside, but independent of each other on the night side. This indicates photochemical processes and is in agreement with the primary production route for the low mass negative ions being initiated by dissociative reactions with suprathermal electron populations produced by photoionisation. We also find the ratio of CN/C2HCN^-/C_2H^- to C3N/C4HC_3N^-/C_4H^- highly constrained on the day-side, in agreement with this production channel, but notably displays large variations on the nightside.

Keywords

Cite

@article{arxiv.2008.07591,
  title  = {Spatial variations of low mass negative ions in Titan's upper atmosphere},
  author = {Teodora Mihailescu and Ravindra Desai and Oleg Shebanits and Richard Haythornthwaite and Anne Wellbrock and Andrew Coates and Jonathan Eastwood and J. Hunter Waite},
  journal= {arXiv preprint arXiv:2008.07591},
  year   = {2021}
}

Comments

11 pages, 5 figures