Planets in evolved binary systems
arXiv:1012.0572 · doi:10.1063/1.3556185
Abstract
Exoplanets are typically thought to form in protoplanetary disks left over from protostellar disk of their newly formed host star. However, additional planetary formation and evolution routes may exist in old evolved binary systems. Here we discuss the implications of binary stellar evolution on planetary systems. In these binary systems stellar evolution could lead to the formation of symbiotic stars, where mass is lost from one star and could be transferred to its binary companion, and may form an accretion disk around it. This raises the possibility that such a disk could provide the necessary environment for the formation of a new, second generation of planets in both circumstellar or circumbinary configurations. Pre-existing first generation planets surviving the post-MS evolution of such systems would be dynamically effected by the mass loss in the systems and may also interact with the newly formed disk. Second generation planetary systems should be typically found in white dwarf binary systems, and may show various observational signatures. Most notably, second generation planets could form in environment which are inaccessible, or less favorable, for first generation planets. The orbital phase space available for the second generation planets could be forbidden (in terms of the system stability) to first generation planets in the pre-evolved progenitor binaries. Observations of exo-planets in such forbidden or unfavorable regions could possibly serve to uniquely identify their second generation character. Finally, we point out a few observed candidate second generation planetary systems, including Gl 86, HD 27442 and all of the currently observed circumbinary planet candidates. A second generation origin for these systems could naturally explain their unique configurations.
Invited review for the proceedings of the "Planetary Systems beyond the Main Sequence" conference, Bamberg Germany. Part of PlanetsbeyondMS/2010 proceedings http://arxiv.org/html/1011.6606
References in corpus (2)
Cited by in corpus (15)
- Simulating the Common Envelope Phase of a Red Giant Using SPH and Uniform Grid Codes
- The triple evolution dynamical instability: Stellar collisions in the field and the formation of exotic binaries
- Planetary Systems Around White Dwarfs
- The role of planets in shaping planetary nebulae
- Tidal circularization of gaseous planets orbiting white dwarfs
- Wind-accretion disks in wide binaries, second generation protoplanetary disks and accretion onto white dwarfs
- Orbital relaxation and excitation of planets tidally interacting with white dwarfs
- A binary merger origin for inflated hot Jupiter planets
- A close-in giant planet escapes engulfment by its star
- Orbit decay of 2-100 au planetary remnants around white dwarfs with no gravitational assistance from planets
- Survivability of radio-loud planetary cores orbiting white dwarfs
- The galactic rate of second and third generation disc and planet formation
- Eclipse timing variation of GK Vir: evidence of a possible Jupiter-like planet in a circumbinary orbit
- Planetesimals drifting through dusty and gaseous white dwarf debris discs: Types I, II and III-like migration
- The Potential of the Timing Method to Detect Evolved Planetary Systems