The Stability of the Suggested Planet in the nu Octantis System: A Numerical and Statistical Study
arXiv:1201.2313 · doi:10.1111/j.1365-2966.2012.20568.x
Abstract
We provide a detailed theoretical study aimed at the observational finding about the nu Octantis binary system that indicates the possible existence of a Jupiter-type planet in this system. If a prograde planetary orbit is assumed, it has earlier been argued that the planet, if existing, should be located outside the zone of orbital stability. However, a previous study by Eberle & Cuntz (2010) [ApJ 721, L168] concludes that the planet is most likely stable if assumed to be in a retrograde orbit with respect to the secondary system component. In the present work, we significantly augment this study by taking into account the observationally deduced uncertainty ranges of the orbital parameters for the stellar components and the suggested planet. Furthermore, our study employs additional mathematical methods, which include monitoring the Jacobi constant, the zero velocity function, and the maximum Lyapunov exponent. We again find that the suggested planet is indeed possible if assumed to be in a retrograde orbit, but it is virtually impossible if assumed in a prograde orbit. Its existence is found to be consistent with the deduced system parameters of the binary components and of the suggested planet, including the associated uncertainty bars given by observations.
11 pages, 10 figures, 3 tables; Monthly Notices of the Royal Astronomical Society (in press)
References in corpus (4)
- Two Suns in The Sky: Stellar Multiplicity in Exoplanet Systems
- WASP-8b: a retrograde transiting planet in a multiple system
- A Statistical Stability Analysis of Earth-like Planetary Orbits in Binary Systems
- The Instability Transition for the Restricted 3-Body Problem. III. The Lyapunov Exponent Criterion
Cited by in corpus (10)
- The three-body problem
- On the dynamical stability of the proposed planetary system orbiting NSVS 14256825
- Testing a hypothesis of the νOctantis planetary system
- Study of Resonances for the Restricted 3-Body Problem
- Secular Dynamics of S-type Planetary Orbits in Binary Star Systems: Applicability Domains of First- and Second-Order Theories
- The conjectured S-type retrograde planet in nu Octantis: more evidence including four years of iodine-cell radial velocities
- Line-depth-ratio temperatures for the close binary nu Octantis: new evidence supporting the conjectured retrograde planet
- On the Possibility of Habitable Moons in the System of HD 23079: Results from Orbital Stability Studies
- A photospheric and chromospheric activity analysis of the quiescent retrograde-planet host Octantis A
- Constraining the orbit of the retrograde planet in the Octantis system