Comets as collisional fragments of a primordial planetesimal disk

被引:78
作者
Morbidelli, A. [1 ]
Rickman, H. [2 ,3 ]
机构
[1] Univ Nice Sophia Antipolis, Dept Lagrange, CNRS, Observ Cote Azur, F-06304 Nice, France
[2] PAS Space Res Ctr, PL-00716 Warsaw, Poland
[3] Uppsala Univ, Dept Phys & Astron, S-75120 Uppsala, Sweden
关键词
comets: general; Kuiper belt: general; protoplanetary disks; Oort Cloud; OUTER SOLAR-SYSTEM; KUIPER-BELT; SIZE DISTRIBUTION; HEAVY BOMBARDMENT; GIANT PLANETS; SMALL BODIES; ORIGIN; EVOLUTION; POPULATION; INSTABILITIES;
D O I
10.1051/0004-6361/201526116
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Context. The Rosetta mission and its exquisite measurements have revived the debate on whether comets are pristine planetesimals or collisionally evolved objects. Aims. We investigate the collisional evolution experienced by the precursors of current comet nuclei during the early stages of the solar system in the context of the so-called Nice model. Methods. We considered two environments for the collisional evolution: (1) the transplanetary planetesimal disk, from the time of gas removal until the disk was dispersed by the migration of the ice giants; and (2) the dispersing disk during the time that the scattered disk was formed. We performed simulations using different methods in the two cases to determine the number of destructive collisions typically experienced by a comet nucleus of 2 km radius. Results. In the widely accepted scenario, where the dispersal of the planetesimal disk occurred at the time of the Late Heavy Bombardment about 4 Gy ago, comet-sized planetesimals have a very low probability of surviving destructive collisions in the disk. On the extreme assumption that the disk was dispersed directly upon gas removal, a significant fraction of the planetesimals might have remained intact. However, these survivors would still bear the marks of many nondestructive impacts. Conclusions. The Nice model of solar system evolution predicts that typical km-sized comet nuclei are predominantly fragments resulting from collisions experienced by larger parent bodies. An important goal for future research is to investigate whether the observed properties of comet nuclei are compatible with such a collisional origin.
引用
收藏
页数:9
相关论文
共 64 条
[1]   COMETARY VOLATILES AND THE ORIGIN OF COMETS [J].
A'Hearn, Michael F. ;
Feaga, Lori M. ;
Keller, H. Uwe ;
Kawakita, Hideyo ;
Hampton, Donald L. ;
Kissel, Jochen ;
Klaasen, Kenneth P. ;
McFadden, Lucy A. ;
Meech, Karen J. ;
Schultz, Peter H. ;
Sunshine, Jessica M. ;
Thomas, Peter C. ;
Veverka, Joseph ;
Yeomans, Donald K. ;
Besse, Sebastien ;
Bodewits, Dennis ;
Farnham, Tony L. ;
Groussin, Olivier ;
Kelley, Michael S. ;
Lisse, Carey M. ;
Merlin, Frederic ;
Protopapa, Silvia ;
Wellnitz, Dennis D. .
ASTROPHYSICAL JOURNAL, 2012, 758 (01)
[2]   67P/Churyumov-Gerasimenko, a Jupiter family comet with a high D/H ratio [J].
Altwegg, K. ;
Balsiger, H. ;
Bar-Nun, A. ;
Berthelier, J. J. ;
Bieler, A. ;
Bochsler, P. ;
Briois, C. ;
Calmonte, U. ;
Combi, M. ;
De Keyser, J. ;
Eberhardt, P. ;
Fiethe, B. ;
Fuselier, S. ;
Gasc, S. ;
Gombosi, T. I. ;
Hansen, K. C. ;
Haessig, M. ;
Jaeckel, A. ;
Kopp, E. ;
Korth, A. ;
Leroy, L. ;
Mall, U. ;
Marty, B. ;
Mousis, O. ;
Neefs, E. ;
Owen, T. ;
Reme, H. ;
Rubin, M. ;
Semon, T. ;
Tzou, C. -Y. ;
Waite, H. ;
Wurz, P. .
SCIENCE, 2015, 347 (6220)
[3]   Size, density, and structure of Comet Shoemaker-Levy 9 inferred from the physics of tidal breakup [J].
Asphaug, E ;
Benz, W .
ICARUS, 1996, 121 (02) :225-248
[4]   The mass disruption of Jupiter Family comets [J].
Belton, Michael J. S. .
ICARUS, 2015, 245 :87-93
[5]   Catastrophic disruptions revisited [J].
Benz, W ;
Asphaug, E .
ICARUS, 1999, 142 (01) :5-20
[6]   The size distribution of trans-Neptunian bodies [J].
Bernstein, GM ;
Trilling, DE ;
Allen, RL ;
Brown, ME ;
Holman, M ;
Malhotra, R .
ASTRONOMICAL JOURNAL, 2004, 128 (03) :1364-1390
[7]   The structure of protoplanetary discs around evolving young stars [J].
Bitsch, Bertram ;
Johansen, Anders ;
Lambrechts, Michiel ;
Morbidelli, Alessandro .
ASTRONOMY & ASTROPHYSICS, 2015, 575
[8]   Comets formed in solar-nebula instabilities! - An experimental and modeling attempt to relate the activity of comets to their formation process [J].
Blum, J. ;
Gundlach, B. ;
Muehle, S. ;
Trigo-Rodriguez, J. M. .
ICARUS, 2014, 235 :156-169
[9]  
Bockelée-Morvan D, 2004, SPACE SCI S, P391
[10]   Can planetesimals left over from terrestrial planet formation produce the lunar Late Heavy Bombardment? [J].
Bottke, William F. ;
Levison, Harold F. ;
Nesvorny, David ;
Dones, Luke .
ICARUS, 2007, 190 (01) :203-223