Connecting the Light Curves of Type IIP Supernovae to the Properties of their Progenitors
arXiv:2102.01118 · doi:10.3847/1538-4357/ac77f3
Abstract
Observations of core-collapse supernovae (CCSNe) reveal a wealth of information about the dynamics of the supernova ejecta and its composition but very little direct information about the progenitor. Constraining properties of the progenitor and the explosion requires coupling the observations with a theoretical model of the explosion. Here, we begin with the CCSN simulations of Couch et al 2020 ApJ 890 127, which use a non-parametric treatment of the neutrino transport while also accounting for turbulence and convection. In this work we use the SuperNova Explosion Code to evolve the CCSN hydrodynamics to later times and compute bolometric light curves. Focusing on SNe IIP, we then (1) directly compare the theoretical STIR explosions to observations and (2) assess how properties of the progenitor's core can be estimated from optical photometry in the plateau phase alone. First, the distribution of plateau luminosities (L) and ejecta velocities achieved by our simulations is similar to the observed distributions. Second, we fit our models to the light curves and velocity evolution of some well-observed SNe. Third, we recover well-known correlations, as well as the difficulty of connecting any one SN property to zero-age main sequence mass. Finally, we show that there is a usable, linear correlation between iron core mass and L such that optical photometry alone of SNe IIP can give us insights into the cores of massive stars. Illustrating this by application to a few SNe, we find iron core masses of 1.3-1.5 solar masses with typical errors of ~0.05 solar masses. Data are publicly available online (\url{https://doi.org/10.5281/zenodo.6631964}).
23 pages, Accepted to ApJ. Data available online https://doi.org/10.5281/zenodo.6631964
References in corpus (49)
- Array Programming with NumPy
- Power-law distributions in empirical data
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Theory of Core-Collapse Supernovae
- Observational constraints on the progenitors of core-collapse supernovae : the case for missing high mass stars
- Characterizing the V-band light-curves of hydrogen-rich type II supernovae
- Time Dependent Monte Carlo Radiative Transfer Calculations For 3-Dimensional Supernova Spectra, Lightcurves, and Polarization
- Supernova Neutrino Detection
- Three-Dimensional Simulations of Core-Collapse Supernovae: From Shock Revival to Shock Breakout
- Truncated Moment Formalism for Radiation Hydrodynamics in Numerical Relativity
- The Role of Turbulence in Neutrino-Driven Core-Collapse Supernova Explosions
- Towards Characterization of the Type IIP Supernova Progenitor Population: a Statistical Sample of Light Curves from Pan-STARRS1
- The Explosion of Helium Stars Evolved With Mass Loss
- Towards a Cosmological Hubble Diagram for Type II-P Supernovae
- Different to the core: the pre-supernova structures of massive single and binary-stripped stars
- Type II supernova spectral diversity I: Observations, sample characterization and spectral line evolution
- A Sample of Type II-L Supernovae
- The Initial Masses of the Red Supergiant Progenitors to Type-II Supernovae
- Three-dimensional Models of Core-collapse Supernovae From Low-mass Progenitors With Implications for Crab
- On The Intrinsic Diversity of Type II-Plateau Supernovae
- SNEWS 2.0: A Next-Generation SuperNova Early Warning System for Multi-messenger Astronomy
- Inferring Explosion Properties from Type II-Plateau Supernova Light Curves
- 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
- The Type II-Plateau Supernova 2017eaw in NGC 6946 and Its Red Supergiant Progenitor
- Type II supernova spectral diversity II: Spectroscopic and photometric correlations
- Three Dimensional Core-Collapse Supernova Simulations with 160 Isotopic Species Evolved to Shock Breakout
- The presupernova core mass-radius relation of massive stars: understanding its formation and evolution
- Radiation-hydrodynamical modelling of underluminous type II plateau Supernovae
- The difficulty of inferring progenitor masses from Type II-Plateau supernova light curves
- A study of the low-luminosity Type II-Plateau supernova 2008bk
- The Uncertain Masses of Progenitors of Core Collapse Supernovae and Direct Collapse Black Holes
- The Value of Progenitor Radius Measurements for Explosion Modeling of Type II-Plateau Supernovae
- Progenitors of low-luminosity Type II-Plateau supernovae
- Features of Accretion-phase Gravitational-wave Emission from Two-dimensional Rotating Core-collapse Supernovae
- Dimension dependence of numerical simulations on gravitational waves from protoneutron stars
- High-Cadence, Early-Time Observations of Core-Collapse Supernovae From the TESS Prime Mission
- Determining the Structure of Rotating Massive Stellar Cores with Gravitational Waves
- The distance, supernova rate and supernova progenitors of NGC 6946
- Shock breakouts from red supergiants: analytical and numerical predictions
- A Critical Assessment of Turbulence Models for 1D Core-Collapse Supernova Simulations
- Impact of magnetic field on neutrino-matter interactions in core-collapse supernova
- Progenitor properties of type II supernovae: fitting to hydrodynamical models using Markov chain Monte Carlo methods
- General Relativistic Neutrino-Driven Turbulence in One-Dimensional Core-Collapse Supernovae
- Impact of neutrino pair-production rates in Core-Collapse Supernovae
- Enormous explosion energy of Type IIP SN 2017gmr with bipolar Ni-56 ejecta
- Revisiting the progenitor of the low-luminosity type II-plateau supernova, SN 2008bk
Cited by in corpus (12)
- Inferencing Progenitor and Explosion Properties of Evolving Core-collapse Supernovae from Zwicky Transient Facility Light Curves
- Search for gravitational waves emitted from SN 2023ixf
- Inferring CSM Properties of Type II SNe Using a Magnitude-Limited ZTF Sample
- Parameterisations of thermal bomb explosions for core-collapse supernovae and 56Ni production
- Inferring Type II-P Supernova Progenitor Masses from Plateau Luminosities
- The Extremely Metal-Poor SN 2023ufx: A Local Analog to High-Redshift Type II Supernovae
- Neutrino-driven Core-collapse Supernova Yields in Galactic Chemical Evolution
- Searching for Magnetar Binaries Disrupted by Core-Collapse Supernovae
- Light Curves of Type IIP Supernovae from Neutrino-driven Explosions of Red Supergiants Obtained by a Semi-analytic Approach
- Phase-transition-induced collapse of proto-compact stars and its implication for supernova explosions
- SN 2022acko: a low-luminosity SNe IIP with signs of early circumstellar interaction
- Subluminous Type IIP SN 2024abfl as a Result of a Significantly Low-energy Fe-core Collapse