• Title of article

    The thermal structure of Titan’s upper atmosphere, II: Energetics

  • Author/Authors

    Snowden، نويسنده , , D. and Yelle، نويسنده , , R.V.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    14
  • From page
    64
  • To page
    77
  • Abstract
    Temperature profiles derived from Cassini Ion Neutral Mass Spectrometer data in Paper I show that the thermal structure of Titan’s upper atmosphere is extremely variable. The median temperature of each vertical profile, which is approximately equal to the temperature derived by fitting the barometric equation to the N2 density profile, varied between 112 and 175 K. Here we attempt to understand the cause of the 60 K variation in temperature, as well as large local perturbations in temperature, by estimating the strength of potentially important energy sources and sinks in Titan’s thermosphere including ion and electron precipitation from Saturn’s magnetosphere, Joule heating, and wave dissipation. The apparent correlation between the temperature of Titan’s thermosphere and Titan’s plasma environment suggest that particle precipitation from Saturn’s magnetosphere may be the most significant heat source, but we find that the energy deposited by magnetospheric sources is less than solar EUV and results from a thermal structure model indicate that magnetospheric particle precipitation only increases the temperature of Titan’s thermosphere by ∼7 K; therefore, heating due to magnetospheric particle precipitation is too small to explain the largest temperature variations observed. We also estimate the energy deposited by waves in Titan’s thermosphere and show that wave dissipation may be a significant source of heating or cooling in Titan’s upper atmosphere.
  • Keywords
    Titan , Atmosphere , Aeronomy , atmosphere , Structure
  • Journal title
    Icarus
  • Serial Year
    2014
  • Journal title
    Icarus
  • Record number

    2380174