Determining the main-sequence mass of Type II supernova progenitors
arXiv:1006.2268 · doi:10.1111/j.1365-2966.2010.17190.x
Abstract
We present radiation-hydrodynamics simulations of core-collapse supernova (SN) explosions, artificially generated by driving a piston at the base of the envelope of a rotating or non-rotating red-supergiant progenitor star. We search for trends in ejecta kinematics in the resulting Type II-Plateau (II-P) SN, exploring dependencies with explosion energy and pre-SN stellar-evolution model. We recover the trivial result that larger explosion energies yield larger ejecta velocities in a given progenitor. However, we emphasise that for a given explosion energy, the increasing helium-core mass with main-sequence mass of such Type II-P SN progenitors leads to ejection of core-embedded oxygen-rich material at larger velocities. We find that the photospheric velocity at 15d after shock breakout is a good and simple indicator of the explosion energy in our selected set of pre-SN models. This measurement, combined with the width of the nebular-phase OI6303-6363A line, can be used to place an upper-limit on the progenitor main-sequence mass. Using the results from our simulations, we find that the current, but remarkably scant, late-time spectra of Type II-P SNe support progenitor main-sequence masses inferior to ~20Msun and thus, corroborate the inferences based on the direct, but difficult, progenitor identification in pre-explosion images. The narrow width of OI6303-6363A in Type II-P SNe with nebular spectra does not support high-mass progenitors in the range 25-30Msun. Combined with quantitative spectroscopic modelling, such diagnostics offer a means to constrain the main-sequence mass of the progenitor, the mass fraction of the core ejected, and thus, the mass of the compact remnant formed.
accepted to MNRAS
References in corpus (23)
- Delayed neutrino-driven supernova explosions aided by the standing accretion-shock instability
- Evolution of massive stars with pulsation-driven superwinds during the RSG phase
- SN 2005cs in M51 II. Complete Evolution in the Optical and the Near-Infrared
- Fallback and Black Hole Production in Massive Stars
- Binary star progenitors of long gamma-ray bursts
- Red supergiants as potential Type IIn supernova progenitors: Spatially resolved 4.6 micron CO emission around VY CMa and Betelgeuse
- Photometric and spectroscopic evolution of the type IIP supernova SN 2004et
- Features of the Acoustic Mechanism of Core-Collapse Supernova Explosions
- Using Quantitative Spectroscopic Analysis to Determine the Properties and Distances of Type II-Plateau Supernovae: SNe 2005cs and 2006bp
- An optimal hydrodynamic model for the normal Type IIP supernova 1999em
- Atmospheric dynamics and the mass loss process in red supergiant stars
- SN 2006bp: Probing the Shock Breakout of a Type II-P Supernova
- Double-peaked Oxygen Lines Are not Rare in Nebular Spectra of Core-Collapse Supernovae
- The Proto-neutron Star Phase of the Collapsar Model and the Route to Long-soft Gamma-ray Bursts and Hypernovae
- The Connection between Gamma-Ray Bursts and Extremely Metal-Poor Stars: Black Hole-forming Supernovae with Relativistic Jets
- Aspherical Properties of Hydrodynamics and Nucleosynthesis in Jet-induced Supernovae
- Progenitor mass of the type IIP supernova 2005cs
- Bolometric Light Curves for 33 Type II-Plateau Supernovae
- VLT detection of a red supergiant progenitor of the type IIP supernova 2008bk
- Time-dependent Effects in Photospheric-Phase Type II Supernova Spectra
- Magnetar-Driven Magnetic Tower as a Model for Gamma-Ray Bursts and Asymmetric Supernovae
- Nebular Phase Observations of the Type Ib Supernova 2008D/X-ray Transient 080109: Side-Viewed Bipolar Explosion
- Nonlinear Saturation of g-modes in Proto-Neutron Stars: Quieting the Acoustic Engine
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- Modules for Experiments in Stellar Astrophysics (MESA): Binaries, Pulsations, and Explosions
- Black Hole Formation in Failing Core-Collapse Supernovae
- Observational constraints on the progenitors of core-collapse supernovae : the case for missing high mass stars
- Generalized Semi-Analytical Models of Supernova Light Curves
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- Super-luminous supernovae: 56Ni power versus magnetar radiation
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- The progenitor mass of the Type IIP supernova SN 2004et from late-time spectral modeling
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- The Great Escape: How Exoplanets and Smaller Bodies Desert Dying Stars
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- The Development of Explosions in Axisymmetric Ab Initio Core-Collapse Supernova Simulations of 12-25 Stars
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- Caltech Core-Collapse Project (CCCP) Observations of Type II Supernovae: Evidence for Three Distinct Photometric Subtypes
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- Numerical simulations of super-luminous supernovae of type IIn
- Failed Supernovae Explain the Compact Remnant Mass Function
- SN 2011ht: Confirming a Class of Interacting Supernovae with Plateau Light Curves (Type IIn-P)
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- The Type IIP Supernova 2012aw in M95: hydrodynamical modelling of the photospheric phase from accurate spectrophotometric monitoring
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- 450 Days of Type II SN 2013ej in Optical and Near-Infrared
- Shock Breakout in Type II Plateau Supernovae: Prospects for High Redshift Supernova Surveys
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- Peculiar Type II Supernovae from Blue Supergiants
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- Photometric and Spectroscopic Evolution of the Type IIP SN 2007it to Day 944
- SN 2009ib: A Type II-P Supernova with an Unusually Long Plateau
- Type II supernova spectral diversity II: Spectroscopic and photometric correlations
- Luminous Type II Short-Plateau Supernovae 2006Y, 2006ai, and 2016egz: A Transitional Class from Stripped Massive Red Supergiants
- Supernovae Ib and Ic from the explosion of helium stars
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- Simulations of light curves and spectra for superluminous Type Ic supernovae powered by magnetars
- Radiative-transfer models for explosions from rotating and non-rotating single WC stars. Implications for SN1998bw and LGRB/SNe
- A study of the low-luminosity Type II-Plateau supernova 2008bk
- A nearby superluminous supernova with a long pre-maximum 'plateau' and strong CII features
- An Emerging Coherent Picture of Red Supergiant Supernova Explosions
- After the Fall: Late-Time Spectroscopy of Type IIP Supernovae
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- Explosions of blue supergiants from binary mergers for SN 1987A
- Non-LTE time-dependent spectroscopic modelling of type II-plateau supernovae from the photospheric to the nebular phase: case study for 15 and 25Msun progenitor stars
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- Exploring the efficacy and limitations of shock-cooling models: new analysis of Type II supernovae observed by the Kepler mission
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- Optical and Ultraviolet Observations of the Very Young Type IIP SN 2014cx in NGC 337
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- SN 2018gj: A Short-plateau Type II Supernova with Persistent Blue-shifted H-alpha Emission
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- SN 2020zbf: A fast-rising hydrogen-poor superluminous supernova with strong carbon lines
- Bright but slow - Type II supernovae from OGLE-IV - Implications for magnitude limited surveys
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- Distinguishing Dirac and Majorana Neutrinos: Resonant Spin-Flavor Precession of GeV-Scale Astrophysical Transients
- A database of spectral energy distributions of progenitors of core-collapse supernovae