Limits on core driven ILOT outbursts of asymptotic giant branch stars
arXiv:1401.1324 · doi:10.1093/mnras/stu314
Abstract
We find that single-star mechanisms for Intermediate Luminosity Optical Transients (ILOTs; Red Transients; Red Novae) which are powered by energy release in the core of asymptotic giant branch (AGB) stars are likely to eject the entire envelope, and hence cannot explain ILOTs in AGB and similar stars. There are single-star and binary models for the powering of ILOTs, which are eruptive stars with peak luminosities between those of novae and supernovae. In single-star models the ejection of gas at velocities of ~500-1000 km/s and a possible bright ionizing flash, require a shock to propagate from the core outward. Using a self similar solution to follow the propagation of the shock through the envelope of two evolved stellar models, a 6Mo AGB star and an 11Mo yellow supergiant (YSG) star, we find that the shock that is required to explain the observed mass loss also ejects most of the envelope. We also show that for the event to have a strong ionizing flash the required energy expels most of the envelope. The removal of most of the envelope is in contradiction with observations. We conclude that single-star models for ILOTs of evolved giant stars encounter severe difficulties.
Accepted by MNRAS
References in corpus (11)
- Modules for Experiments in Stellar Astrophysics (MESA)
- High Density Circumstellar Interaction in the Luminous Type IIn SN 2010jl: The first 1100 days
- A New Class of Luminous Transients and A First Census of Their Massive Stellar Progenitors
- The 2008 Luminous Optical Transient in the Nearby Galaxy NGC 300
- An Intermediate Luminosity Transient in NGC300: The Eruption of a Dust-Enshrouded Massive Star
- SN 2008S: A Cool Super-Eddington Wind in a Supernova Impostor
- A Spitzer/IRS Spectrum of the 2008 Luminous Transient in NGC 300: Connection to Proto-Planetary Nebulae
- The Environment of M85 optical transient 2006-1: constraints on the progenitor age and mass
- Common Powering Mechanism of Intermediate Luminosity Optical Transients and Luminous Blue Variables
- A binary scenario for the pre-explosion outburst of the supernova 2010mc
- The energy source of intermediate luminosity optical transients
Cited by in corpus (11)
- Wave-driven stellar expansion and binary interaction in pre-supernova outbursts
- Operation of the jet feedback mechanism (JFM) in intermediate luminosity optical transients (ILOTs)
- Efficiently jet-powered radiation in intermediate-luminosity optical transients (ILOTS)
- Explaining Two Recent Intermediate Luminosity Optical Transients (ILOTs) by a Binary Interaction and Jets
- Type II intermediate-luminosity optical transients (ILOTs)
- An intermediate-luminosity-optical-transient (ILOT) model for the young stellar object ASASSN-15qi
- Explaining recently studied intermediate luminosity optical transients (ILOTs) with jet powering
- Intermediate Luminosity Optical Transients (ILOTs) from merging giants
- The circumstellar matter of type II intermediate luminosity optical transients (ILOTs)
- A rapidly fading star as a type II obscuring intermediate luminosity optical transient (ILOT) in a triple star system
- Using Intermediate-Luminosity Optical Transients (ILOTs) to reveal extended extra-solar Kuiper belt objects