Effect of Jupiter's mass growth on satellite capture


Autoria(s): Neto, E. V.; Winter, O. C.; Yokoyama, T.
Contribuinte(s)

Universidade Estadual Paulista (UNESP)

Data(s)

26/02/2014

20/05/2014

26/02/2014

20/05/2014

01/06/2006

Resumo

We study the effects of Jupiter mass growth in order to permanently capture prograde satellites. Adopting the restricted three-body problem, Sun-Jupiter-Particle, we performed numerical simulations backward in time while considering the decrease in Jupiter's mass. We considered the particle's initial conditions to be prograde, at pericenter, in the region 100R(4) <= a <= 400R(4) and 0 <= e <= 0.5. The results give Jupiter's mass at the moment when the particle escapes from the planet. Such values give an indication of the conditions that are necessary for capture. An analysis of these results shows that prograde satellite capture is more complex than a retrograde one. It occurs in a two-step process. First, when the particles get inside about 0.85R(Hill) (Hills' radius), they become weakly bound to Jupiter. Then, they keep migrating toward the planet with a strong decrease in eccentricity, while the planet is growing. The radial oscillation of the particles reduces significantly when they reach a radial distance that is less than about 0.45R(Hill) from the planet. Three-dimensional simulations for the known prograde satellites of Jupiter were performed. The results indicate that Leda, Himalia, Lysithea, and Elara could have been permanently captured when Jupiter had between 50% and 60% of its present mass.

Formato

1091-1097

Identificador

http://dx.doi.org/10.1051/0004-6361:20041683

Astronomy & Astrophysics. Les Ulis Cedex A: Edp Sciences S A, v. 452, n. 3, p. 1091-1097, 2006.

0004-6361

http://hdl.handle.net/11449/24802

10.1051/0004-6361:20041683

WOS:000238117900043

WOS000238117900043.pdf

Idioma(s)

eng

Publicador

Edp Sciences S A

Relação

Astronomy & Astrophysics

Direitos

closedAccess

Palavras-Chave #planets and satellites : formation #solar system : formation #solar system : general
Tipo

info:eu-repo/semantics/article