New morphometric measurements of craters and basins on Mercury and the Moon from MESSENGER and LRO altimetry and image data: An observational framework for evaluating models of peak-ring basin formation
暂无分享,去创建一个
[1] M. Warner,et al. Dynamic modeling suggests terrace zone asymmetry in the Chicxulub crater is caused by target heterogeneity , 2008 .
[2] M. Malin,et al. Modification of fresh crater landforms: Evidence from the Moon and Mercury , 1978 .
[3] W. Reimold,et al. Large Meteorite Impacts and Planetary Evolution IV , 2010 .
[4] M. Cintala,et al. Planetary differences in impact melting , 1997 .
[5] James W. Head,et al. Comparison of impact basins on Mercury, Mars and the moon , 1976 .
[6] R. Grieve,et al. Constraints on the formation of ring impact structures, based on terrestrial data , 1981 .
[7] Maria T. Zuber,et al. The transition from complex crater to peak-ring basin on the Moon: New observations from the Lunar Orbiter Laser Altimeter (LOLA) instrument , 2011 .
[8] J. Spray,et al. Constraints on central uplift structure from the Manicouagan impact crater , 2008 .
[9] A. McEwen,et al. Lunar Reconnaissance Orbiter Camera (LROC) Instrument Overview , 2010 .
[10] Kevin R. Housen,et al. Impact Cratering: A Geologic Process , 1987 .
[11] W. McKinnon,et al. Large impact craters and basins on Venus, with implications for ring mechanics on the terrestrial planets , 1992 .
[12] P. Schultz. Floor-fractured lunar craters , 1976 .
[13] Kevin K. Williams,et al. Measurement and Analysis of Lunar Basin Depths from Clementine Altimetry , 1998 .
[14] M. Cintala,et al. An analysis of differential impact melt‐crater scaling and implications for the terrestrial impact record , 1992 .
[15] M. Wieczorek,et al. Nonuniform cratering of the Moon and a revised crater chronology of the inner Solar System , 2011 .
[16] G. Fielder. The Face of the Moon , 1970, Nature.
[17] J. Morgan,et al. Is Ries crater typical for its size? An analysis based upon old and new geophysical data and numerical modeling , 2005 .
[18] David E. Smith,et al. The transition from complex craters to multi-ring basins on the Moon: Quantitative geometric properties from Lunar Reconnaissance Orbiter Lunar Orbiter Laser Altimeter (LOLA) data , 2012 .
[19] Richard J. Pike,et al. Crater dimensions from apollo data and supplemental sources , 1976 .
[20] P. Barton,et al. GEOPHYSICAL CHARACTERIZATION OF THE CHICXULUB IMPACT CRATER , 2013 .
[21] S. V. Gasselt,et al. Map-projection-independent crater size-frequency determination in GIS environments—New software tool for ArcGIS , 2011 .
[22] Gareth S. Collins,et al. Constraining the size of the South Pole-Aitken basin impact , 2010 .
[23] W. Hartmann,et al. Moon: Origin and evolution of multi-ring basins , 1971 .
[24] Mark J. Cintala,et al. Scaling impact melting and crater dimensions: Implications for the lunar cratering record , 1998 .
[25] Richard J. Pike,et al. Depth/diameter relations of fresh lunar craters: Revision from spacecraft data , 1974 .
[26] B. Ivanov. Numerical Modeling of the Largest Terrestrial Meteorite Craters , 2005 .
[27] W.,et al. Asymmetric terracing of lunar highland craters : Influence of pre-impact topography and structure , 2005 .
[28] D. Arthur,et al. The system of lunar craters, quadrant III. , 1965 .
[29] H. Melosh,et al. The mechanics of ringed basin formation , 1978 .
[30] J. Head. Transition from complex craters to multi‐ringed basins on terrestrial planetary bodies: Scale‐dependent role of the expanding melt cavity and progressive interaction with the displaced zone , 2010 .
[31] R. Phillips,et al. Lunar Multiring Basins and the Cratering Process , 1999 .
[32] H. Melosh,et al. Melt Production in Oblique Impacts , 1999 .
[33] D. T. Lee,et al. Two algorithms for constructing a Delaunay triangulation , 1980, International Journal of Computer & Information Sciences.
[34] K. Holsapple. THE SCALING OF IMPACT PROCESSES IN PLANETARY SCIENCES , 1993 .
[35] M. Cintala,et al. Crater degradation on Mercury and the moon - Clues to surface evolution , 1977 .
[36] S. Croft. Scaling of Complex Craters , 1985 .
[37] Faith Vilas,et al. Characterization of the Morphometry of Impact Craters Hosting Polar Deposits in Mercury's North Polar Region , 2012 .
[38] John W. Keller,et al. Lunar Reconnaissance Orbiter (LRO): Observations for Lunar Exploration and Science , 2010 .
[39] Gordon R. Osinski,et al. Impact ejecta emplacement on terrestrial planets , 2011 .
[40] David E. Smith,et al. The Mercury Laser Altimeter Instrument for the MESSENGER Mission , 2007 .
[41] J. Head,et al. The global population of large craters on Mercury and comparison with the Moon , 2011 .
[42] M. Wieczorek,et al. Nonuniform cratering of the terrestrial planets , 2008 .
[43] Erick R. Malaret,et al. The Mercury Dual Imaging System on the MESSENGER Spacecraft , 2007 .
[44] V. S. Scott,et al. The Lunar Orbiter Laser Altimeter Investigation on the Lunar Reconnaissance Orbiter Mission , 2010 .
[45] H. Melosh,et al. Hydrocode simulations of Chicxulub crater collapse and peak-ring formation , 2002 .
[46] R. Ehrlich,et al. Sources of shape variation in lunar impact craters: Fourier shape analysis , 1982 .
[47] J. Head,et al. Central peaks in lunar craters - Morphology and morphometry , 1979 .
[48] Erwan Mazarico,et al. Global Distribution of Large Lunar Craters: Implications for Resurfacing and Impactor Populations , 2010, Science.
[49] R. J. Pike,et al. Basin-ring spacing on the Moon, Mercury, and Mars , 1987 .
[50] J. Head. Processes of lunar crater degradation: Changes in style with geologic time , 1975 .
[51] T. Öhman,et al. Polygonal impact craters in the solar system: Observations and implications , 2010 .
[52] Eugene I. Smith,et al. Crater size-shape profiles for the moon and mercury: Terrain effects and interplanetary comparisons , 1978 .
[53] M. Warner,et al. Importance of pre-impact crustal structure for the asymmetry of the Chicxulub impact crater , 2008 .
[54] D. Wilhelms,et al. Formation of lunar basin rings , 1978 .
[55] A. Gifford,et al. Asymmetric terracing of lunar highland craters - Influence of pre-impact topography and structure , 1979 .
[56] Mark J. Cintala,et al. Impact‐induced thermal effects in the lunar and Mercurian regoliths , 1992 .
[57] V. Bray,et al. Investigating the transition from central peak to peak‐ring basins using central feature volume measurements from the Global Lunar DTM 100 m , 2012 .
[58] Richard J. Pike,et al. Geomorphology of impact craters on Mercury , 1988 .
[59] F. Hörz,et al. Large meteorite impacts III , 2005 .
[60] A. Basilevsky,et al. Lunar craters evolution and meteoroidal flux in pre-mare and post-mare times , 1981 .
[61] Boris A. Ivanov,et al. Numerical modelling of the impact crater depth–diameter dependence in an acoustically fluidized target , 2003 .
[62] Clark R. Chapman,et al. The MESSENGER mission to Mercury: Scientific objectives and implementation , 2001 .
[63] D. Kring,et al. Large Meteorite Impacts and Planetary Evolution , 1994 .
[64] James W. Head,et al. Impact melt on lunar crater rims. , 1977 .
[65] H. Melosh,et al. Peak-ring formation in large impact craters: geophysical constraints from Chicxulub , 2000 .
[66] Lionel Wilson,et al. Geology and petrology of enormous volumes of impact melt on the Moon: A case study of the Orientale basin impact melt sea , 2013 .
[67] S. Murchie,et al. The transition from complex crater to peak-ring basin on Mercury: New observations from MESSENGER flyby data and constraints on basin formation models , 2011 .
[68] David E. Smith,et al. Large impact basins on Mercury: Global distribution, characteristics, and modification history from MESSENGER orbital data , 2012 .
[69] H. Melosh. A schematic model of crater modification by gravity , 1982 .
[70] G. Collins,et al. Mid‐sized complex crater formation in mixed crystalline‐sedimentary targets: Insight from modeling and observation , 2008 .
[71] R. Grieve,et al. Volumetric analysis of complex lunar craters: Implications for basin ring formation , 1982 .
[72] David E. Smith,et al. The Morphology of Craters on Mercury: Results from MESSENGER Flybys , 2012 .
[73] Richard J. Pike,et al. Size-dependence in the shape of fresh impact craters on the moon , 1977 .
[74] David E. Smith,et al. Topography of the Northern Hemisphere of Mercury from MESSENGER Laser Altimetry , 2012, Science.
[75] J. Murray. Oscillating peak model of basin and crater formation , 1980 .
[76] W. Hartmann,et al. Concentric Structures Surrounding Lunar Basins , 1962 .
[77] D. Kring,et al. Rim uplift and crater shape in Meteor Crater: Effects of target heterogeneities and trajectory obliquity , 2009 .
[78] J. Head,et al. Impact Melt Sheets in Lunar Basins: Estimating Thickness from Cooling Behavior , 2011 .
[79] J. Head. Origin of outer rings in lunar multi-ringed basins - Evidence from morphology and ring spacing , 1977 .
[80] Alan D. Howard,et al. Simulated degradation of lunar impact craters and a new method for age dating farside mare deposits , 2000 .
[81] Gareth S. Collins,et al. Full waveform tomographic images of the peak ring at the Chicxulub impact crater , 2011 .