• Title of article

    Radiative forcing of the stratosphere of Jupiter, Part I: Atmospheric cooling rates from Voyager to Cassini

  • Author/Authors

    Zhang، نويسنده , , X. and Nixon، نويسنده , , C.A. and Shia، نويسنده , , R.L. Storeton-West، نويسنده , , R.A. and Irwin، نويسنده , , P.G.J. and Yelle، نويسنده , , R.V. and Allen، نويسنده , , M.A. and Yung، نويسنده , , Y.L.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    23
  • From page
    3
  • To page
    25
  • Abstract
    We developed a line-by-line heating and cooling rate model for the stratosphere of Jupiter, based on two complete sets of global maps of temperature, C2H2 and C2H6, retrieved from the Cassini and Voyager observations in the latitude and vertical plane, with a careful error analysis. The non-LTE effect is found unimportant on the thermal cooling rate below the 0.01 mbar pressure level. The most important coolants are molecular hydrogen between 10 and 100 mbar, and hydrocarbons, including ethane (C2H6), acetylene (C2H2) and methane (CH4), in the region above. The two-dimensional cooling rate maps are influenced primarily by the temperature structure, and also by the meridional distributions of C2H2 and C2H6. The temperature anomalies at the 1 mbar pressure level in the Cassini data and the strong C2H6 latitudinal contrast in the Voyager epoch are the two most prominent features influencing the cooling rate patterns, with the effect from the ‘quasi-quadrennial oscillation (QQO)’ thermal structures at ~20 mbar. The globally averaged CH4 heating and cooling rates are not balanced, clearly in the lower stratosphere under 10 mbar, and possibly in the upper stratosphere above the 1 mbar pressure level. Possible heating sources from the gravity wave breaking and aerosols are discussed. The radiative relaxation timescale in the lower stratosphere implies that the temperature profile might not be purely radiatively controlled.
  • Keywords
    Jupiter atmosphere , Outer planets , Abundance retrieval , radiative transfer , Energy balance
  • Journal title
    PLANETARY AND SPACE SCIENCE
  • Serial Year
    2013
  • Journal title
    PLANETARY AND SPACE SCIENCE
  • Record number

    2315534