Volatile retention from cometary impacts on the Moon
暂无分享,去创建一个
Erik Asphaug | Robert F. Coker | R. Coker | E. Asphaug | E. Asphaug | D. Korycansky | L. Ong | D. G. Korycansky | Lissa Ong
[1] Lori M. Feaga,et al. Temporal and Spatial Variability of Lunar Hydration As Observed by the Deep Impact Spacecraft , 2009, Science.
[2] M. D. Dyar,et al. Character and Spatial Distribution of OH/H2O on the Surface of the Moon Seen by M3 on Chandrayaan-1 , 2009, Science.
[3] Roger N. Clark,et al. Detection of Adsorbed Water and Hydroxyl on the Moon , 2009, Science.
[4] Willy Benz,et al. Numerical simulations of impacts involving porous bodies: II. Comparison with laboratory experiments , 2009 .
[5] V. Eke,et al. The spatial distribution of polar hydrogen deposits on the Moon , 2008, 0810.2478.
[6] Erik Asphaug,et al. Validation of numerical codes for impact and explosion cratering: Impacts on strengthless and metal targets , 2008 .
[7] W. Benz,et al. Numerical simulations of impacts involving porous bodies: I. Implementing sub-resolution porosity in a 3D SPH hydrocode , 2008, 0807.1264.
[8] W. R. Oakes,et al. The RAGE radiation-hydrodynamic code , 2008, 0804.1394.
[9] P. Schultz,et al. The Deep Impact oblique impact cratering experiment , 2007 .
[10] T. Nakamura,et al. Subaru Main Belt Asteroid Survey (SMBAS)—Size and color distributions of small main-belt asteroids , 2007 .
[11] M. Kaasalainen,et al. A Portrait of the Nucleus of Comet 67P/Churyumov-Gerasimenko , 2007 .
[12] P. Weissman. The cometary impactor flux at the Earth , 2006, Proceedings of the International Astronomical Union.
[13] E. Asphaug,et al. Water Delivered to the Moon by Comet Impacts , 2006 .
[14] Gareth S. Collins,et al. A strain-based porosity model for use in hydrocode simulations of impacts and implications for transient crater growth in porous targets , 2006 .
[15] J. E. Richardson,et al. Modeling the Ballistic Behavior of Solid Ejecta from the Deep Impact Cratering Event , 2006 .
[16] N. Thomas,et al. A large dust/ice ratio in the nucleus of comet 9P/Tempel 1 , 2005, Nature.
[17] H. Melosh,et al. Impact Cratering Theory and Modeling for the Deep Impact Mission: From Mission Planning to Data Analysis , 2005 .
[18] B. Ivanov. Shock Melting of Permafrost on Mars: Water Ice Multiphase Equation of State for Numerical Modeling and Its Testing , 2005 .
[19] Karen J. Meech,et al. Comet nucleus size distributions from HST and Keck telescopes , 2004 .
[20] B. L. Baker. Review of organic matter in the Orgueil meteorite , 1971, Space life sciences.
[21] M. Murphy,et al. Experiments and Simulations of Penetration into Granite by an Aluminum Shaped Charge , 2003 .
[22] R. H. Brown,et al. Hydrogen concentrations on C‐class asteroids derived from remote sensing , 2003 .
[23] Dana Hurley Crider,et al. Space weathering effects on lunar cold trap deposits , 2003 .
[24] Kevin R. Housen,et al. Impact cratering on porous asteroids , 2003 .
[25] A. Fitzsimmons,et al. The size distribution of Jupiter Family comet nuclei , 2003, 1101.4228.
[26] A. Fitzsimmons,et al. CCD photometry of distant comets. III - Ensemble properties of Jupiter-family comets , 2003 .
[27] Paul A. Klenk,et al. Lunar ice: Adsorbed water on subsurface polar dust , 2002 .
[28] B. Klumov,et al. Possible origin of lunar ice , 2002 .
[29] Elisabetta Pierazzo,et al. Cometary Delivery of Biogenic Elements to Europa , 2002 .
[30] Stephanie C. Werner,et al. The Near-Earth Asteroid Size–Frequency Distribution: A Snapshot of the Lunar Impactor Size–Frequency Distribution , 2002 .
[31] Michael L. Gittings,et al. MODELING THE 1958 LITUYA BAY MEGA-TSUNAMI, II , 2002 .
[32] E. Pierazzo,et al. Thickness of a Europan Ice Shell from Impact Crater Simulations , 2001, Science.
[33] P. Weissman,et al. The size distribution of cometary nuclei , 2001 .
[34] R. Wiens,et al. Evidence for water ice near the lunar poles , 2001 .
[35] M. Bailey,et al. Near-Earth object velocity distributions and consequences for the Chicxulub impactor , 2001 .
[36] David W. Hughes,et al. The magnitude distribution, perihelion distribution and flux of long-period comets , 2001 .
[37] P. Weissman,et al. Rapid collisional evolution of comets during the formation of the Oort cloud , 2001, Nature.
[38] Dana Hurley Crider,et al. The solar wind as a possible source of lunar polar hydrogen deposits , 2000 .
[39] Alan B. Binder,et al. Polar hydrogen deposits on the Moon , 2000 .
[40] M. Holman,et al. Planetary Impact Rates from Ecliptic Comets , 2000 .
[41] H. Melosh,et al. Hydrocode modeling of oblique impacts: The fate of the projectile , 2000 .
[42] Paul W. Kervin,et al. Results of Observational Campaigns Carried Out During the Impact of Lunar Prospector into a Permanently Shadowed Crater near the South Pole of the Moon , 1999 .
[43] Marilyn Schneider,et al. Richtmyer–Meshkov instability growth: experiment, simulation and theory , 1999, Journal of Fluid Mechanics.
[44] V. Shevchenko. On the Cometary Origin of Lunar Polar Ice , 1999 .
[45] K. Rawlins,et al. External Sources of Water for Mercury's Putative Ice Deposits☆ , 1999 .
[46] B. Butler. The migration of volatiles on the surfaces of Mercury and the Moon , 1997 .
[47] Harold F. Levison,et al. From the Kuiper Belt to Jupiter-Family Comets: The Spatial Distribution of Ecliptic Comets☆ , 1997 .
[48] P. Schultz. Effect of impact angle on vaporization , 1996 .
[49] Robert F. Benjamin,et al. Simulation of shock-generated instabilities , 1996 .
[50] W. Benz,et al. Density of comet Shoemaker–Levy 9 deduced by modelling breakup of the parent 'rubble pile' , 1994, Nature.
[51] M. S. Matthews,et al. Hazards Due to Comets and Asteroids , 1992 .
[52] Larry A. Lebofsky,et al. The composition and origin of the C, P, and D asteroids: Water as a tracer of thermal evolution in the outer belt , 1990 .
[53] H. Melosh,et al. Atmospheric erosion and impactor retention in large impacts, with application to mass extinctions , 1990 .
[54] K. Zahnle. Atmospheric chemistry by large impacts , 1990 .
[55] H. J. Melosh,et al. Impact erosion of the primordial atmosphere of Mars , 1989, Nature.
[56] W. Reimold,et al. Global catastrophes in Earth history , 1989 .
[57] Eugene M. Shoemaker,et al. Asteroid and comet flux in the neighborhood of the earth , 1988 .
[58] H. Melosh. Impact Cratering: A Geologic Process , 1986 .
[59] A. Dollfus,et al. Ices in the Solar System , 1985 .
[60] T. Ahrens,et al. Shock vaporization and the accretion of the icy satellites of Jupiter and Saturn , 1985 .
[61] G. Kerley. Perturbation theory and the thermodynamic properties of fluids. I. General theory , 1980 .
[62] L. Aller,et al. The chemical composition of the sun. , 1976, Science.
[63] B. Mason. The mineralogy of meteorites. , 1972 .
[64] Stephen J. Keihm,et al. The Apollo 15 lunar heat-flow measurement , 1972 .
[65] J. S. Dohnanyi. Collisional model of asteroids and their debris , 1969 .
[66] S. P. Gill,et al. Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena , 2002 .
[67] Y. Zel’dovich,et al. Gas Dynamics. (Book Reviews: Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena. Vol. 1) , 1970 .
[68] Bruce C. Murray,et al. The behavior of volatiles on the lunar surface , 1961 .
[69] Fred L. Whipple,et al. A comet model. I. The acceleration of Comet Encke , 1950 .