Artículo
The Spin-Orbit Evolution of GJ 667C System: The Effect of Composition and Other Planet’s Perturbations
Cuartas Restrepo, P. A.; Melita, Mario Daniel
; Zuluaga, J. I.; Portilla Revelo, B.; Sucerquia, M.; Miloni, O.
Fecha de publicación:
02/09/2016
Editorial:
Oxford University Press
Revista:
Monthly Notices Of The Royal Astronomical Society
ISSN:
0035-8711
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Potentially habitable planets within the habitable zone of M dwarfs are affected by tidal interaction. We studied tidal evolution in GJ 667C using a numerical code we call TIDEV. We reviewed the problem of dynamical evolution, focusing on the effects of a rheological treatment, different compositions and the inclusion of orbital perturbations on the spin-down time and the probability of becoming trapped in a low spin-orbit resonance. The composition has a noticeable effect on the spin-down time, which changes, in some cases, by almost a factor of 2 with respect to the value estimated for a reference Earth-like model. We calculated the time required to reach a low resonance value (3:2) for a configuration of six planets. Capture probabilities are affected when assuming different compositions and eccentricity variations. We chose planets b and c to evaluate the probabilities of capture in resonances below 5:2 for two compositions: Earth-like and Waterworld planets. We found that perturbations, although having a secular effect on eccentricities, have a low impact on capture probabilities and no effect on spin-down times. The implications of the eccentricity variations and actual habitability of the GJ 667C system are discussed.
Palabras clave:
Exoplanets
,
Celestial Mechanics
,
Tidal Interaction
,
Planetary Science
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Colecciones
Articulos(IAFE)
Articulos de INST.DE ASTRONOMIA Y FISICA DEL ESPACIO(I)
Articulos de INST.DE ASTRONOMIA Y FISICA DEL ESPACIO(I)
Citación
Cuartas Restrepo, P. A.; Melita, Mario Daniel; Zuluaga, J. I.; Portilla Revelo, B.; Sucerquia, M.; et al.; The Spin-Orbit Evolution of GJ 667C System: The Effect of Composition and Other Planet’s Perturbations; Oxford University Press; Monthly Notices Of The Royal Astronomical Society; 463; 2; 2-9-2016; 1592-1604
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