ODEA: Orbital Dynamics in a complex Evolving Architecture -- Application to the planetary system HD 106906
arXiv:1909.04536 · doi:10.1051/0004-6361/201935728
Abstract
Mixed-variable symplectic integrators are widely used in orbital dynamics. However, they have been developed for Solar system-type architectures, and can not handle evolving hierarchy, in particular in systems with two or more stellar components. Such configuration may have occurred in the history of HD 106906, a tight pair of F-type stars surrounded by a debris disk and a planetary-mass companion on a wide orbit. We present the new algorithm ODEA, based on the symplectic algorithm SWIFT HJS, that can model any system (binary,...) with unstable architecture. We study the peculiar system HD 106906 as a testcase for the code. We define and compute a criterion based on acceleration ratios to indicate when the initial hierarchy is not relevant anymore. A new hierarchy is then computed. The code is applied to study the two fly-bys that occurred on system HD 106906, recently evidenced by De Rosa & Kalas (2019), to determine if they could account for the wide orbit of the planet. Thousands of simulations have been performed to account for the uncertainty on the perturbers coordinates and velocities. The algorithm is able to handle any change of hierarchy, temporary or not. We used it to fully model HD 106906 encounters. The simulations confirm that the fly-bys could have stabilized the planet orbit, and show that it can account for the planet probable misalignment with respect to the disk plane as well as the disk morphology. However, that requires a small distance at closest approach (< 0.05 pc), and this configuration is not guaranteed. ODEA is a very good choice for the study of non-Solar type architecture. It can now adapt to an evolving hierarchy, and is thus suitable to study capture of planets and dust. Further observations of the perturbers, in particular their radial velocity, are required to conclude on the effects of the fly-by on system HD 106906.
15 pages, 17 figures, accepted in A&A
References in corpus (5)
- Hybrid Symplectic Integrators for Planetary Dynamics
- Investigating the flyby scenario for the HD 141569 system
- HD 106906: A Case Study for External Perturbations of a Debris Disk
- A Near-coplanar Stellar Flyby of the Planet Host Star HD 106906
- High signal-to-noise spectral characterization of the planetary-mass object HD 106906 b
Cited by in corpus (6)
- On the Correlation between Hot Jupiters and Stellar Clustering: High-eccentricity Migration Induced by Stellar Flybys
- First detection of orbital motion for HD 106906 b: A wide-separation exoplanet on a Planet Nine-like orbit
- Formation History of HD106906 and the Vertical Warping of Debris Disks by an External Inclined Companion
- ALMA imaging of the M-dwarf Fomalhaut C's debris disc
- Millimeter Dust Emission and Planetary Dynamics in the HD 106906 System
- Investigating 2M1155-7919B: a Nearby, Young, Low-Mass Star Actively Accreting from a Nearly Edge-on, Dusty Disk