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Numerical Experiments on Planetesimal Aggregation during the Formation of the Solar System

Published online by Cambridge University Press:  25 April 2016

K. Hourigan*
Affiliation:
Department of Mathematics, Monash University

Extract

A major area of difficulty in the cosmogony of the solar system is understanding how a large number of small planetesimals, which have condensed from the primordial gas, can aggregate into the ordered planetary system present today. Theories involving aggregation within a gaseous disc [e.g. Cameron (1973)] suffer the common difficulty that the particles, once condensed, are no longer supported by the radial gas pressure gradient and spiral rapidly in towards the Sun. Most of the planetesimals are dragged in to the central body in times several orders of magnitude less than would be required for larger bodies to accrete (Goldreich & Ward 1973).

Type
Contributions
Copyright
Copyright © Astronomical Society of Australia 1977

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References

Alfven, H., Astrophys. Space Sci., 6, 161 (1970).CrossRefGoogle Scholar
Brahic, A., Icarus, 25, 452 (1975).CrossRefGoogle Scholar
Cameron, A. G. W., Icarus, 18, 407 (1973).Google Scholar
Goldreich, P. and Ward, W. R., Astrophys. J., 183, 1051 (1973).CrossRefGoogle Scholar
Prentice, A. J. R., in “In the Beginning…” (Ed. J. P. Wild), Australian Academy of Science (1974).Google Scholar
Prentice, A. J. R., in “The Origin of the Solar System”, (Ed. Dermott, S. F.), John Wiley & Sons, London (1978).Google Scholar
Trulsen, J., Astrophys. Space Sci., 17, 241 (1972).CrossRefGoogle Scholar