Abstract
Recent radio occultations of Saturn's equatorial ionosphere by the Cassini spacecraft provide important insight into this poorly constrained region. Twelve new electron density profiles identify a clear dawn/dusk asymmetry as well as two apparently separate electron density peaks. This study uses a 3D general circulation model along with ID water, diffusion calculations to examine the possibility that a topside flux of neutral water into Saturn's atmosphere may provide a loss mechanism - via charge exchange with protons - that is sufficient to reproduce the ionosphere observed by Cassini. Results indicate that a constant influx of water of (0.5-1.0) × 107 H2O cm-2 sec-1 is adequate for reproducing Cassini measurements, providing a good match to the main electron density peak at dawn and dusk. In addition, these calculations use a reduced rate for the reaction H+ + H2(v ≥ 4) → H+2 + H, significantly diminishing its importance in Saturn's ionospheric photochemistry. Copyright 2006 by the American Geophysical Union.
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CITATION STYLE
Moore, L., Nagy, A. F., Kliore, A. J., Müller-Wodarg, I., Richardson, J. D., & Mendillo, M. (2006). Cassini radio occultations of Saturn’s ionosphere: Model comparisons using a constant water flux. Geophysical Research Letters, 33(22). https://doi.org/10.1029/2006GL027375
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