Episodic outgassing as the origin of atmospheric methane on Titan
暂无分享,去创建一个
[1] J. Lunine,et al. Clathrate and Ammonia Hydrates at High Pressure: Application to the Origin of Methane on Titan , 1987 .
[2] R. Lowell,et al. Seafloor hydrothermal systems driven by the serpentinization of peridotite , 2002 .
[3] D. Hunten,et al. The abundances of constituents of Titan's atmosphere from the GCMS instrument on the Huygens probe , 2005, Nature.
[4] C P McKay,et al. Photochemically Driven Collapse of Titan's Atmosphere , 1997, Science.
[5] Gabriel Tobie,et al. Titan's internal structure inferred from a coupled thermal-orbital model , 2005 .
[6] Giacomo Giampieri,et al. Doppler Measurements of the Quadrupole Moments of Titan , 1997 .
[7] C. Sotin,et al. Clues on Titan's Internal Structure from Cassini-Huygens Mission , 2002 .
[8] E. G. Larionov,et al. Decomposition of methane hydrates up to 15 kbar , 1997 .
[9] R. Jaumann,et al. Release of volatiles from a possible cryovolcano from near-infrared imaging of Titan , 2005, Nature.
[10] J. Lunine,et al. Ethane Ocean on Titan , 1983, Science.
[11] E. G. Larionov,et al. Clathrate formation in the Ar-H2O system under pressures up to 15000 bar , 1997 .
[12] Hauke Hussmann,et al. Interior structure models and tidal Love numbers of Titan , 2003 .
[13] R. West,et al. No oceans on Titan from the absence of a near-infrared specular reflection , 2005, Nature.
[14] R. Kirk,et al. Cassini Radar Views the Surface of Titan , 2005, Science.
[15] G. D. Holder. Clathrate Hydrates of Natural Gases, 2nd ed., Revised and Expanded. Chemical Industries Series/73 By E. Dendy Sloan, Jr. Marcel Dekker, Inc.: New York. 1998. 754 pages. $195.00. ISBN 0-8247-9937-2. , 1998 .
[16] R. Kirk,et al. Rain, winds and haze during the Huygens probe's descent to Titan's surface , 2005, Nature.
[17] Daniel Gautier,et al. An Evolutionary Turbulent Model of Saturn's Subnebula: Implications for the Origin of the Atmosphere of Titan , 2002 .
[18] M. W. Evans,et al. Imaging of Titan from the Cassini spacecraft , 2005, Nature.
[19] O. Grasset,et al. The ammonia–water system at high pressures: Implications for the methane of Titan , 2005 .
[20] M. Allen,et al. Photochemistry of the atmosphere of Titan: comparison between model and observations. , 1984, The Astrophysical journal. Supplement series.
[21] Olivier Grasset,et al. On the internal structure and dynamics of Titan , 1998 .
[22] J. Loveday,et al. Stable methane hydrate above 2 GPa and the source of Titan's atmospheric methane , 2001, Nature.
[23] Bruce Block,et al. Ion Neutral Mass Spectrometer Results from the First Flyby of Titan , 2005, Science.
[24] Stephen H. Kirby,et al. The strength and rheology of methane clathrate hydrate , 2003 .
[25] J. Lunine,et al. On the volatile inventory of Titan from isotopic abundances in nitrogen and methane. , 1999, Planetary and space science.
[26] T. Owen. On the origin of Titan's atmosphere. , 2000, Planetary and space science.
[27] Gabriel Tobie,et al. Europa: Tidal heating of upwelling thermal plumes and the origin of lenticulae and chaos melting , 2002 .
[28] Jonathan I. Lunine,et al. Silicate interactions with ammonia‐water fluids on early Titan , 1994 .
[29] T. Matsui,et al. Formation of a hot proto‐atmosphere on the accreting giant icy satellite: Implications for the origin and evolution of Titan, Ganymede, and Callisto , 1994 .