Hostname: page-component-848d4c4894-8kt4b Total loading time: 0 Render date: 2024-06-21T15:04:44.077Z Has data issue: false hasContentIssue false

Interaction of the Cometary Dust with the Solar Wind and Cometary Plasma

Published online by Cambridge University Press:  12 April 2016

W.-H. Ip
Affiliation:
Max-Planck- Institut für Aeronomie, D-3411 Katlenburg-Lindau, Federal Republic of Germany
H. Kimura
Affiliation:
Max-Planck- Institut für Aeronomie, D-3411 Katlenburg-Lindau, Federal Republic of Germany
C.-P. Liu
Affiliation:
Max-Planck- Institut für Aeronomie, D-3411 Katlenburg-Lindau, Federal Republic of Germany

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Along the lines of previous studies on the cometary dust-plasma interaction processes, we evaluate the electromagnetic effect of submicron dust in the coma and in the dust tail. The possible occurence of electrostatic disruption of charged dust in the ion tail is also discussed from theoretical and observational points of view. The relevance of these processes to the formation of striae in the dust tails of several comets is addressed and the conclusion is made that trajectory study of the submicron dust in the striae must take into account the action of the interplanetary electric field.

Type
VI. Dust – Plasma Interactions
Copyright
Copyright © Reidel 1985

References

Consolmagno, G.L. (1979) Icarus, 38, 398.CrossRefGoogle Scholar
Fechtig, H., Grün, E. and Morfill, G. (1979) Planet. Space Sci., 27, 511.CrossRefGoogle Scholar
Finson, M.L. and Probstein, R.F. (1968) Astrophys. J., 154, 327.CrossRefGoogle Scholar
Hill, J.R. and Mendis, D.A. (1980) Astrophys. J., 242, 395.CrossRefGoogle Scholar
Ip, W.-H. and Mendis, D.A. (1976) Icarus, 29, 147.CrossRefGoogle Scholar
Kimura, H. and Liu, C.-P. (1977) Chinese Astron., 1, 235.CrossRefGoogle Scholar
Larson, S.M. and Sekanina, Z. (1984) Astron. J., 89, 571.CrossRefGoogle Scholar
Levy, E.H. and Jokipii, J.R. (1976) Nature, 264, 423.CrossRefGoogle Scholar
Morfill, G. and Grün, E. (1979) Planet. Space Sci., 27, 1269.CrossRefGoogle Scholar
Mukai, T. (1981) Astron. Astrophys., 99, 1.Google Scholar
Notni, P. (1964) Veröff. Sternwarte Babelsberg, 15(1).Google Scholar
Notni, P. (1966) Mem. Soc. Roy. Sci. Liege, 5°, ser. 12, 379.Google Scholar
Öpik, E.J. (1956) Irish Astron. J., 4, 84.Google Scholar
Parker, E.N. (1964) Astrophys. J. 139, 951.CrossRefGoogle Scholar
Rhee, J.W. (1976) in Interplanetary Dust and Zodiacal Light, eds., Elsässer, H. and Fechtig, H., Springer-Verlag, Berlin, p. 238.CrossRefGoogle Scholar
Sekanina, Z. and Farrell, J.A. (1980) Astron. J., 85, 1538.CrossRefGoogle Scholar
Sekanina, Z. and Farrell, J.A. (1982) Astron. J., 87, 1836.CrossRefGoogle Scholar
Wallis, M.K. and Hassan, M.H. (1983) Astron. Astrophys., 121, 10.Google Scholar
Wallis, M.K. and Ip, W.-H. (1982) Nature, 298, 229.CrossRefGoogle Scholar