The importance of 56Ni in shaping the light curves of type II supernovae
arXiv:1506.07185 · doi:10.3847/0004-637X/823/2/127
Abstract
What intrinsic properties shape the light curves of Type II supernovae (SNe)? To address this question we derive observational measures that are robust (i.e., insensitive to detailed radiative transfer) and constrain the contribution from Ni, as well as a combination of the envelope mass, progenitor radius, and explosion energy. By applying our methods to a sample of type II SNe from the literature we find that Ni contribution is often significant. In our sample its contribution to the time weighted integrated luminosity during the photospheric phase ranges between 8% and 72% with a typical value of 30%. We find that the Ni relative contribution is anti-correlated with the luminosity decline rate. When added to other clues, this in turn suggests that the flat plateaus often observed in type II SNe are not a generic feature of the cooling envelope emission, and that without Ni many of the SNe that are classified as II-P would have shown a decline rate that is steeper by up to 1 mag/100 d. Nevertheless, we find that the cooling envelope emission, and not Ni contribution, is the main driver behind the observed range of decline rates. Furthermore, contrary to previous suggestions, our findings indicate that fast decline rates are not driven by lower envelope masses. We therefore suggest that the difference in observed decline rates is mainly a result of different density profiles of the progenitors.
References in corpus (20)
- The death of massive stars - I. Observational constraints on the progenitors of type II-P 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
- SN 2005cs in M51 II. Complete Evolution in the Optical and the Near-Infrared
- Towards Characterization of the Type IIP Supernova Progenitor Population: a Statistical Sample of Light Curves from Pan-STARRS1
- Underluminous Type II Plateau Supernovae: II. Pointing towards moderate mass precursors
- Photometric and Spectroscopic Properties of Type II-P Supernovae
- Towards a Cosmological Hubble Diagram for Type II-P Supernovae
- A Sample of Type II-L Supernovae
- An optimal hydrodynamic model for the normal Type IIP supernova 1999em
- Supernova 2013by: A Type IIL Supernova with a IIP-like light curve drop
- H-alpha Spectral diversity of type II supernovae
- The Type IIP Supernova 2012aw in M95: hydrodynamical modelling of the photospheric phase from accurate spectrophotometric monitoring
- Bolometric Light Curves for 33 Type II-Plateau Supernovae
- SN 2009N: Linking normal and subluminous type II-P SNe
- SN 2009ib: A Type II-P Supernova with an Unusually Long Plateau
- Supernova 1987A: neutrino-driven explosions in three dimensions and light curves
- SN 2013ab : A normal type IIP supernova in NGC 5669
- SN 2012ec: mass of the progenitor from PESSTO follow-up of the photospheric phase
- Bright but slow - Type II supernovae from OGLE-IV - Implications for magnitude limited surveys
Cited by in corpus (30)
- Unifying Type II Supernova Light Curves with Dense Circumstellar Material
- Measuring the Progenitor Masses and Dense Circumstellar Material of Type II Supernovae
- Inferring Explosion Properties from Type II-Plateau Supernova Light Curves
- Radioactive heating rate of r-process elements and macronova light curve
- On the photometric and spectroscopic diversity of Type II supernovae
- Type II supernova spectral diversity II: Spectroscopic and photometric correlations
- The Value of Progenitor Radius Measurements for Explosion Modeling of Type II-Plateau Supernovae
- Progenitors of low-luminosity Type II-Plateau supernovae
- Analytic heating rate of neutron star merger ejecta derived from Fermi's theory of beta decay
- The -ray deposition histories of core-collapse supernovae
- Type II supernovae from the Carnegie Supernova Project-I. III. Understanding SN II diversity through correlations between physical and observed properties
- The role of radioactive nickel in shaping the plateau phase of Type II supernovae
- A low-energy explosion yields the underluminous Type IIP SN 2020cxd
- Exploring the efficacy and limitations of shock-cooling models: new analysis of Type II supernovae observed by the Kepler mission
- The Evolution of Temperature and Bolometric Luminosity in Type-II Supernovae
- Hydrogen-rich Core Collapse Supernovae
- A Massive Star's Dying Breaths: Pulsating Red Supergiants and Their Resulting Type IIP Supernovae
- ASASSN-15nx: A luminous Type II supernova with a "perfect" linear decline
- Evidence for r-process delay in very metal-poor stars
- Observational signature of circumstellar interaction and Ni-mixing in the Type II Supernova 2016gfy
- BVRI Photometry of the Classic Type II-P Supernova 2017eaw in NGC 6946: Day 3 to Day 594
- KSP-SN-2016kf: a long-rising H-rich Type II Supernova with unusually high Ni mass discovered in the KMTNet Supernova Program
- ASASSN-18am/SN 2018gk : An overluminous Type IIb supernova from a massive progenitor
- SN 2016hil-- a Type II supernova in the remote outskirts of an elliptical host and its origin
- The -ray deposition histories of Calcium-rich supernovae
- Core-Collapse Supernovae: From Neutrino-Driven 1D Explosions to Light Curves and Spectra
- Exploring Composition Mixing in Kilonova Ejecta with Ray-by-ray Simulations
- Constraining the TeV gamma-ray emission of SN 2024bch, a possible type IIn-L from a red supergiant progenitor. Multiwavelength observations and analysis of the progenitor
- SN 2019va: A Type IIP Supernova with Large Influence of Nickel-56 Decay on the Plateau-phase Light Curve
- Electron-capture Supernova Candidates from Light Curves: Implications for Their Progenitors and Explosion Properties