Spinning-Up the Envelope Before Entering a Common Envelope Phase
arXiv:0910.0522 · doi:10.1016/j.newast.2009.12.007
Abstract
We calculate the orbital evolution of binary systems where the primary star is an evolved red giant branch (RGB) star, while the secondary star is a low-mass main sequence (MS) star or a brown dwarf. The evolution starts with a tidal interaction causes the secondary to spiral-in. Than either a common envelope (CE) is formed in a very short time, or alternatively the system reaches synchronization and the spiraling-in process substantially slows down. Some of the latter systems later enter a CE phase. We find that for a large range of system parameters, binary systems reach stable synchronized orbits before the onset of a CE phase. Such stable synchronized orbits allow the RGB star to lose mass prior to the onset of the CE phase. Even after the secondary enters the giant envelope, the rotational velocity is high enough to cause an enhanced mass-loss rate. Our results imply that it is crucial to include the pre-CE evolution when studying the outcome of the CE phase. We find that many more systems survive the CE phase than would be the case if these preceding spin-up and mass-loss phases had not been taken into account. Although we have made the calculations for RGB stars, the results have implications for other evolved stars that interact with close companions.
New Astronomy, in press
References in corpus (11)
- Low-Mass Binary Induced Outflows from Asymptotic Giant Branch Stars
- A binary model for the UV-upturn of elliptical galaxies (MNRAS version)
- Isolated vs. Common Envelope Dynamos in Planetary Nebula Progenitors
- A critical test of empirical mass loss formulae applied to individual giants and supergiants
- A possible solution for the lack of EHB binaries in globular clusters
- Mass Outflow from Red Giant Stars in M13, M15, and M92
- Discovery of a close substellar companion to the hot subdwarf star HD 149382 - The decisive influence of substellar objects on late stellar evolution
- An evolutionary study of the pulsating subdwarf B eclipsing binary PG1336-018 (NY Vir)
- Observed Planetary Nebulae as Descendants of Interacting Binary Systems
- Gas and Dust Associated with the Strange, Isolated, Star BP Piscium
- An alternative to common envelope evolution
Cited by in corpus (17)
- Common Envelope Evolution: Where we stand and how we can move forward
- The Evolution of Compact Binary Star Systems
- A Circumbinary Disk in the Final Stages of Common Envelope and the Core-Degenerate Scenario for Type Ia Supernovae
- On the alpha formalism for the common envelope interaction
- Tides and Tidal Engulfment in Post-Main Sequence Binaries: Period Gaps for Planets and Brown Dwarfs Around White Dwarfs
- The supernova rate and delay time distribution in the Magellanic Clouds
- The limited role of recombination energy in common envelope removal
- Planet formation from the ejecta of common envelopes
- Formation of Millisecond Pulsars from Intermediate- and Low-Mass X-ray Binaries
- Connecting planets around horizontal branch stars with known exoplanets
- The role of planets in shaping planetary nebulae
- V605 Aquilae: a born again star, a nova or both?
- Type IIb supernova progenitors by fatal common envelope evolution
- Planet formation in post-common-envelope binaries
- Type IIb supernovae by the grazing envelope evolution
- Planetary influences on photometric variation of the extreme helium subdwarf KIC10449976
- Hot Subdwarf Formation: Confronting Theory with Observation