An Evolutionary Turbulent Model of Saturn's Subnebula: Implications for the Origin of the Atmosphere of Titan
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Daniel Gautier | Olivier Mousis | Dominique Bockelée-Morvan | D. Gautier | D. Bockelée-Morvan | O. Mousis
[1] M. Lin,et al. Kinetics of the methoxy radical decomposition reaction: theory and experiment , 1989 .
[2] J. Lunine,et al. Thermodynamics of clathrate hydrate at low and high pressures with application to the outer solar system , 1985 .
[3] B. Dubrulle,et al. Structure and Transport in the Solar Nebula from Constraints on Deuterium Enrichment and Giant Planets Formation , 1999 .
[4] R. Prinn,et al. Carbon monoxide on jupiter and implications for atmospheric convection. , 1977, Science.
[5] O. Forni,et al. Origin and thermal evolution of icy satellites , 1995 .
[6] J. Pollack,et al. PRESENT STATE AND CHEMICAL EVOLUTION OF THE ATMOSPHERES OF TITAN, TRITON AND PLUTO , 1989, Origin and Evolution of Planetary and Satellite Atmospheres.
[7] D. Gautier,et al. Chemical Composition of Titan's Atmosphere , 1997 .
[8] B. Fegley,et al. Experimental studies of magnetite formation in the solar nebula , 1998 .
[9] Dennis L. Matson,et al. The Huygens Probe: Science, Payload and Mission Overview , 1997 .
[10] S. Atreya,et al. Evolution of a Nitrogen Atmosphere on Titan , 1978, Science.
[11] JOHN S. Lewis. Metal/silicate fractionation in the solar system , 1972 .
[12] T. Owen. On the origin of Titan's atmosphere. , 2000, Planetary and space science.
[13] A. Coradini,et al. Structure of the satellitary accretion disk of Saturn , 1984 .
[14] D. Gautier,et al. A Two-dimensional Model for the Primordial Nebula Constrained by D/H Measurements in the Solar System: Implications for the Formation of Giant Planets , 2001 .
[15] J. Pollack,et al. The dynamical evolution of the protosolar nebula , 1991 .
[16] N. Grevesse,et al. Abundances of the elements: Meteoritic and solar , 1989 .
[17] Turbulence in differentially rotating flows. What can be learned from the Couette-Taylor experiment , 1999, astro-ph/9903374.
[18] J. Lunine,et al. On the volatile inventory of Titan from isotopic abundances in nitrogen and methane. , 1999, Planetary and space science.
[19] Rashid Sunyaev,et al. Black holes in binary systems. Observational appearance , 1973 .
[20] J. Pinto,et al. Estimation of the reaction rate for the formation of CH3O from H + H2CO: implications for chemistry in the Solar System. , 1988, Icarus.
[21] J. Greenberg,et al. Conditions for condensation and preservation of amorphous ice and crystallinity of astrophysical ices , 1994 .
[22] P. Cassen,et al. The survival of presolar grains during the formation of the solar system , 1997 .
[23] B. Dubrulle. Differential Rotation as a Source of Angular Momentum Transfer in the Solar Nebula , 1993 .
[24] Jack J. Lissauer,et al. Formation of the Giant Planets by Concurrent Accretion of Solids and Gas , 1995 .
[25] J. McClintock,et al. Black Holes in Binary Systems , 1992 .
[26] K. Supulver,et al. Formation of Icy Planetesimals in a Turbulent Solar Nebula , 2000 .
[27] E. Herbst,et al. New models of interstellar gas–grain chemistry – I. Surface diffusion rates , 2002 .
[28] S. Atreya. Eddy mixing coefficient on Saturn , 1982 .
[29] B. Fegley,et al. The Rate of Iron Sulfide Formation in the Solar Nebula , 1996 .
[30] R. Prinn,et al. Solar nebula chemistry - Implications for volatiles in the solar system , 1989 .
[31] Bruce Fegley,et al. Solar nebula chemistry: origins of planetary, satellite and cometary volatiles , 1989 .
[32] J. Lunine,et al. Origins of outer-planet satellites , 1993 .
[33] B. Dubrulle,et al. Constraints on the Formation of Comets from D/H Ratios Measured in H2O and HCN , 2000 .
[34] T. Guillot. A COMPARISON OF THE INTERIORS OF JUPITER AND SATURN , 1999, astro-ph/9907402.
[35] L. Hartmann,et al. Accretion and the Evolution of T Tauri Disks , 1998 .
[36] P. Cassen,et al. Thermal Processing of Interstellar Dust Grains in the Primitive Solar Environment , 1997 .
[37] J. Lunine,et al. Clathrate and Ammonia Hydrates at High Pressure: Application to the Origin of Methane on Titan , 1987 .
[38] Michael D. Smith. Estimation of a Length Scale to Use with the Quench Level Approximation for Obtaining Chemical Abundances , 1998 .
[39] J. Wood. Pressure and Temperature Profiles in the Solar Nebula , 2000 .
[40] Eric Herbst,et al. DEUTERIUM FRACTIONATION IN DENSE INTERSTELLAR CLOUDS , 1989 .
[41] C. Griffith,et al. Disequilibrium chemistry in a brown dwarf's atmosphere: Carbon monoxide in Gliese 229B , 1999 .
[42] M. Abramowicz,et al. Thick accretion disks with super-Eddington luminosities , 1980 .
[43] J. S. Lewis,et al. Kinetic inhibition of CO and N2 reduction in the solar nebula , 1980 .
[44] R. Prinn,et al. Nitrogen on Jupiter: A deep atmospheric source , 1981 .
[45] R. Prinn,et al. Kinetic inhibition of CO and N2 reduction in circumplanetary nebulae - Implications for satellite composition , 1981 .
[46] A. Coustenis,et al. The D/H Ratio in Methane in Titan: Origin and History , 2002 .
[47] A. Tielens,et al. Chemical Evolution of Protostellar Matter , 2000 .
[48] C. Hayashi,et al. The Gas Drag Effect on the Elliptic Motion of a Solid Body in the Primordial Solar Nebula , 1976 .
[49] J. Zahn. Turbulence and differentially rotating flows , 1999 .
[50] D. Lin,et al. The global evolution of the primordial solar nebula , 1986 .
[51] Olivier Grasset,et al. On the internal structure and dynamics of Titan , 1998 .
[52] C. McKay,et al. High-temperature shock formation of N2 and organics on primordial Titan , 1988, Nature.
[53] Alexander G. G. M. Tielens,et al. An Inventory of Interstellar Ices toward the Embedded Protostar W33A , 2000 .
[54] T. Prusti,et al. Observations of Solid Carbon Dioxide in Molecular Clouds with the Infrared Space Observatory , 1999 .
[55] E. Dartois,et al. Search for NH$\mathsf{_3}$ ice in cold dust envelopes around YSOs , 2001 .
[56] J. Lunine,et al. Enrichments in Volatiles in Jupiter: A New Interpretation of the Galileo Measurements , 2001 .
[57] J. Lunine,et al. D to H ratio and the origin and evolution of Titan's atmosphere , 1986, Nature.
[58] Trapping and release of gases by water ice and implications for icy bodies , 1985 .