Wind-Induced Atmospheric Escape : Titan
- Author
- Hartle, Richard
- Published
- [2012].
- Physical Description
- 1 electronic document
- Additional Creators
- Johnson, Robert, Simpson, David, Sarantos, Menelaos, and Sittler, Edward, Jr.
Online Version
- hdl.handle.net , Connect to this object online.
- Restrictions on Access
- Unclassified, Unlimited, Publicly available.
Free-to-read Unrestricted online access - Summary
- Rapid thermospheric flows can significantly enhance the estimates of the atmospheric loss rate and the structure of the atmospheric corona of a planetary body. In particular, rapid horizontal flow at the exobase can increase the corresponding constituent escape rate. Here we show that such corrections, for both thermal and non-thermal escape, cannot be ignored when calculating the escape of methane from Titan, for which drastically different rates have been proposed. Such enhancements are also relevant to Pluto and exoplanets.
- Other Subject(s)
- Collection
- NASA Technical Reports Server (NTRS) Collection.
- Note
- Document ID: 20120013279.
GSFC.ABS.6226.2012. - Terms of Use and Reproduction
- Copyright, Distribution as joint owner in the copyright.
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