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The Evolution of Comet Orbits

Published online by Cambridge University Press:  22 February 2018

Abstract

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This review states and defends seven conclusions on the origin of comets and the evolution of their orbits:

  1. 1. There is a N law of survival of comets against ejection on hyperbolic orbits, where N is the number of perihelion passages.

  2. 2. The short-period comets are not created by single close encounters of near-parabolic comets with Jupiter.

  3. 3. Observable long-period comets do not evolve into observable short-period comets.

  4. 4. Unobservable long-period comets with perihelia near Jupiter can evolve into observable short-period comets.

  5. 5. Long-period comets cannot have been formed or created within the planetary region of the solar system. (This conclusion is somewhat qualified because of possible effects of stellar perturbations. )

  6. 6. It is possible that some of ths short-period comets could have been formed inside the orbit of Neptune, but it is certain that others have the same distant source as the long-period comets.

  7. 7. The circularly-restricted 3-body problem, and its associated Jacobi integral, are not valid approximations to use in studying origin and evolution of comets.

Type
Part I
Copyright
Copyright © NASA 1976

References

Delsemme, A. H. (1973). “Origin of Short-Period CometsAstron. : Astrophys. 29, pp377381.Google Scholar
Everhart, E. (1969) “Close Encounters of Comets and Planets”, Astron J. 74 pp735750.Google Scholar
Everhart, E. (1972a) “The Origin of Short Period CometsAstrophys. Lett., 10, pp131135.Google Scholar
Everhart, E. (1972b) “Origin of Comets” Proc. I. A. U. Colloq. No. 22, Nice (in press).Google Scholar
Everhart, E. (1973a) “Horseshoe and Trojan Orbits Associated with Jupiter and SaturnAstron. J. 78, pp3l6328.Google Scholar
Everhart, E. (1973b) “Examination of Several Ideas of Comet OriginsAstron. J. 78, pp329337 Google Scholar
Galle, J. G. (1894). Verzeichness der Elemente der Bisher Berechneten Cometenbahnen, Leipzig.Google Scholar
Joss, P C. (1973) “On the Origin of Short-Period CometsAstron. & Astrophys. 25, pp271273.Google Scholar
Kazimirchak-Polonskaya, E. I. (1972) “The major Planets as Powerful Transformers of Cometary Orbits” Proc. I. A. U Symposiim No. 45, Leningrad. The motion, Evolution of Orbits, and Origin of Comets. Chebotarev, , et al. editors, D. Reidel Publ. Co., Dordrecht, pp373397 Google Scholar
Kazimirchak-Polonskaya, E. I. (1973) “Evolution of Short-Period Comet Orbits from 1660 to 2060 and the Role of the Outer PlanetsAstron Zh. 44, pp439460 (Soviet Astron. - AJ., 11, pp349-365.)Google Scholar
Lyttleton, R. A., and Hammersley, J. M. (1963) “The Loss of Long-Period Comets from the Solar System”, Monthly Not. 127, pp257272.Google Scholar
Marsden, B. G. (1972) Catalog of Cometary Orbits., Smithsonian Astrophys. Obs.Google Scholar
Newton, H. A. (1893). “On the Capture of Comets by Planets, Especially their Capture by JupiterMem. Natl. Acad. Sci. (Washington), 6, pp723,Google Scholar
Oort, J. H. (1950) “The Structure of the Cloud of Comets Surrounding the Solar Syste, and a Hypothesis Concerning its OriginBull. Astron. Inst. Neth. 11, pp91110 Google Scholar
Porter, J. G. (1961), “Catalog of Cometary Orbits”. Mem. Brit. Astron. Assoc. 39, No. 3.Google Scholar
Shteins, K. A. (1972) “Diffusion of Comets from Parabolic into Nearly Parabolic Orbits” Proc. I. A. U. Symposium No. 45, Leningrad. The Motion, Evolution of Orbits, and Origin of Comets, Chebotarev, et al, editors, D. Reidel Publ. Co., Dordrecht, pp347351.Google Scholar