Shock-heating of stellar envelopes: A possible common mechanism at the origin of explosions and eruptions in massive stars
arXiv:0910.3655 · doi:10.1111/j.1365-2966.2010.16626.x
Abstract
Observations of transient phenomena in the Universe reveal a spectrum of mass-ejection properties associated with massive stars, covering from Type II/Ib/Ic core-collapse supernovae (SNe) to giant eruptions of Luminous Blue Variables (LBV) and optical transients. Here, we hypothesize that a fraction of these phenomena may have an explosive origin, the distinguishing ingredient being the ratio of the prompt energy release E_dep to the envelope binding energy E_binding. Using one-dimensional one-group radiation hydrodynamics and a set of 10-25Msun, massive-star models, we explore the dynamical response of a stellar envelope subject to a strong, sudden, and deeply-rooted energy release. Following energy deposition, a shock systematically forms, crosses the progenitor envelope on a day timescale, and breaks-out with a signal of hour-to-days duration and a 10^5-10^11 Lsun luminosity. For E_dep > E_binding, full envelope ejection results with a SN-like bolometric luminosity and kinetic energy, modulations being commensurate to the energy deposited and echoing the diversity of Type II-Plateau SNe. For E_dep ~ E_binding, partial envelope ejection results with a small expansion speed, and a more modest but year-long luminosity plateau, reminiscent of LBV eruptions or so-called SN impostors. For E_dep < E_binding, we obtain a "puffed-up" star, secularly relaxing back to thermal equilibrium. In parallel with gravitational collapse and Type II SNe, we argue that the thermonuclear combustion of merely a few 0.01Msun of C/O could power a wide range of explosions/eruptions in loosely-bound massive stars, as those in the 8-12Msun range, or in more massive ones owing to their proximity to the Eddington limit and/or critical rotation.
20 pages, 16 figures, 2 tables; accepted to MNRAS
References in corpus (22)
- Progenitors of core-collapse supernovae
- Pulsational pair instability as an explanation for the most luminous supernovae
- The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star
- Sub-surface convection zones in hot massive stars and their observable consequences
- SN 2005cs in M51 II. Complete Evolution in the Optical and the Near-Infrared
- Shell-shocked diffusion model for the light curve of SN2006gy
- Criteria for Core-Collapse Supernova Explosions by the Neutrino Mechanism
- Red supergiants as potential Type IIn supernova progenitors: Spatially resolved 4.6 micron CO emission around VY CMa and Betelgeuse
- Features of the Acoustic Mechanism of Core-Collapse Supernova Explosions
- Towards a Cosmological Hubble Diagram for Type II-P Supernovae
- An optimal hydrodynamic model for the normal Type IIP supernova 1999em
- Using Quantitative Spectroscopic Analysis to Determine the Properties and Distances of Type II-Plateau Supernovae: SNe 2005cs and 2006bp
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- SN 2008S: A Cool Super-Eddington Wind in a Supernova Impostor
- Probing Shock Breakout with Serendipitous GALEX Detections of Two SNLS Type II-P Supernovae
- A Blast Wave from the 1843 Eruption of Eta Carinae
- High mass of the type IIP supernova 2004et inferred from hydrodynamic modeling
- Progenitor mass of the type IIP supernova 2005cs
- A very faint core-collapse supernova in M85
- Faint Supernovae and Supernova Impostors: Case studies of SN2002kg/NGC2403-V37 and SN 2003gm
- Spectra and Light Curves of Failed Supernovae
- The core helium flash revisited: I. One and two-dimensional hydrodynamic simulations
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- Constraining massive star activities in the final years through properties of supernovae and their progenitors
- Supernova Precursor Emission and the Origin of Pre-Explosion Stellar Mass-Loss
- Numerical simulations of the random angular momentum in convection II: delayed explosions of red supergiants following "failed'' supernovae
- Shock Dynamics in Stellar Outbursts: I. Shock formation
- Partial Stellar Explosions -- Ejected Mass and Minimal Energy
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- Wave-Driven Shocks in Stellar Outbursts: Dynamics, Envelope Heating, and Nascent Blastwaves
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- The pre-SN activity as a possible explanation of the peculiar properties of Type IIP Supernova 2009kf
- Mass Ejection Driven by Sudden Energy Deposition in Stellar Envelopes
- Modeling the emission lines from r-process elements in Supernova nebulae