Cratering on Titan: impact melt, ejecta, and the fate of surface organics
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[1] J. M. McGlaun,et al. CTH: A three-dimensional shock wave physics code , 1990 .
[2] R. Lorenz. Impacts and cratering on Titan: a pre-Cassini view , 1997 .
[3] R. Bechmann,et al. Numerical data and functional relationships in science and technology , 1969 .
[4] C. Chyba,et al. The 1908 Tunguska explosion: atmospheric disruption of a stony asteroid , 1993, Nature.
[5] J. B. Plescia,et al. The geology of Ganymede , 1979 .
[6] S. Kieffer,et al. The role of volatiles and lithology in the impact cratering process. , 1980 .
[7] C. McKay,et al. Coupled atmosphere-ocean models of Titan's past. , 1993, Icarus.
[8] J. Pollack,et al. Impact-generated atmospheres over Titan, Ganymede, and Callisto. , 1992, Icarus.
[9] Olivier Grasset,et al. The Cooling Rate of a Liquid Shell in Titan's Interior , 1996 .
[10] D. Cruikshank. Volatiles in the outer solar system , 1991 .
[11] M. Allen,et al. Photochemistry of the atmosphere of Titan: comparison between model and observations. , 1984, The Astrophysical journal. Supplement series.
[12] P. Farinella,et al. The fate of Hyperion's fragments , 1990 .
[13] J. Lunine,et al. Geologic settings for aqueous organic synthesis on Titan revisited. , 2001, Enantiomer.
[14] Paul M. Schenk,et al. Crater formation and modification on the icy satellites of Uranus and Saturn: Depth/diameter and central peak occurrence , 1989 .
[15] Andrew Wilson. Huygens : science, payload and mission , 1997 .
[16] Kevin R. Housen,et al. Some recent advances in the scaling of impact and explosion cratering , 1987 .
[17] J. Lunine,et al. Challenges and approaches to the robotic detection of enantioenrichment on Saturn's moon, Titan. , 2001, Enantiomer.
[18] R. T. Mitchell. The Cassini/Huygens Mission to Saturn and Titan , 2000 .
[19] W. R. Thompson,et al. Organic chemistry on Titan: Surface interactions , 1992 .
[20] D. Gault,et al. Experimental studies of oblique impact. , 1978 .
[21] David Morrison,et al. Satellites of Jupiter , 1982 .
[22] H. Kochan,et al. Laboratory astrophysics and space research , 1999 .
[23] C. Chapman,et al. Cratering of planetary satellites. , 1986 .
[24] K. Holsapple,et al. Velocity scaling impact melt volume , 1987 .
[25] Elisabetta Pierazzo,et al. Amino acid survival in large cometary impacts , 1999 .
[26] Elisabetta Pierazzo,et al. A Reevaluation of Impact Melt Production , 1997 .
[27] D. Gault,et al. Experimental simulation of impact cratering on icy satellites , 1982 .
[28] E. Pierazzo,et al. Thickness of a Europan Ice Shell from Impact Crater Simulations , 2001, Science.
[29] Olivier Grasset,et al. On the internal structure and dynamics of Titan , 1998 .
[30] W. Hartmann,et al. Cratering on Titan and implications for Titan's atmospheric history , 1995 .
[31] Bradford A. Smith,et al. The Surface of Titan from NICMOS Observations with the Hubble Space Telescope , 2000 .
[32] V. Shuvalov,et al. Multi-dimensional hydrodynamic code SOVA for interfacial flows: Application to the thermal layer effect , 1999 .
[33] P. Schenk. Central pit and dome craters: Exposing the interiors of Ganymede and Callisto , 1993 .
[34] Vladimir V. Shuvalov,et al. 3D hydrodynamic code sova for multimaterial flows, application to Shoemakerlevy 9 comet impact problem , 1999 .
[35] J. Lunine,et al. Clathrate and Ammonia Hydrates at High Pressure: Application to the Origin of Methane on Titan , 1987 .
[36] A. Basilevsky,et al. Atmospheric entry of large meteoroids: implication to Titan , 1997 .