How much radioactive nickel does ASASSN-15lh require?
arXiv:1603.00335 · doi:10.1093/mnrasl/slw036
Abstract
The discovery of the most luminous supernova ASASSN-15lh triggered a shock-wave in the supernova community. The three possible mechanisms proposed for the majority of other superluminous supernovae do not produce a realistic physical model for this particular supernova. In the present study we show the limiting luminosity available from a nickel-powered pair-instability supernova. We computed a few exotic nickel-powered explosions with a total mass of nickel up to 1500 solar masses. We used the hydrostatic configurations prepared with the GENEVA and MESA codes, and the STELLA radiative-transfer code for following the explosion of these models. We show that 1500 solar masses of radioactive nickel is needed to power a luminosity of 2x10^45 erg/s. The resulting light curve is very broad and incompatible with the shorter ASASSN-15lh time-scale. This rules out a nickel-powered origin of ASASSN-15lh. In addition, we derive a simple peak luminosity - nickel mass relation from our data, which may serve to estimate of nickel mass from observed peak luminosities.
accepted for publication in MNRAS Letters
References in corpus (20)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Pulsational pair instability as an explanation for the most luminous supernovae
- A neutron-star-driven X-ray flash associated with supernova SN 2006aj
- Theoretical light curves for deflagration models of Type Ia supernova
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- Consistent estimates of (56)Ni yields for type Ia supernovae
- On the evolution and fate of supermassive stars
- Mass ejection by pulsational pair instability in very massive stars and implications for luminous supernovae
- Observational properties of low redshift pair instability supernovae
- Very Massive Stars in the Local Universe
- Abundance Anomalies In Tidal Disruption Events
- The Unusual Super-Luminous Supernovae SN 2011kl and ASASSN-15lh
- The Most Luminous Supernovae
- The Deaths of Very Massive Stars
- PS1-10jh Continues to Follow the Fallback Accretion Rate of a Tidally Disrupted Star
- Pulsations of red supergiant pair-instability supernova progenitors leading to extreme mass loss
- Can pair-instability supernova models match the observations of superluminous supernovae?
- Mass loss of massive stars near the Eddington luminosity by core neutrino emission shortly before their explosion
- Mass-loss rates of Very Massive Stars
- Hydrogenless Superluminous Supernova PTF12dam in the Model of an Explosion inside an Extended Envelope
Cited by in corpus (13)
- The Superluminous Transient ASASSN-15lh as a Tidal Disruption Event from a Kerr Black Hole
- Fast evolving pair-instability supernova models: evolution, explosion, light curves
- Results from a systematic survey of X-ray emission from Hydrogen-poor Superluminous Supernovae
- Supernova ejecta with a relativistic wind from a central compact object: a unified picture for extraordinary supernovae
- X-rays from the location of the Bactrian Transient ASASSN-15lh
- The Unexpected, Long-Lasting, UV Rebrightening of the Super-Luminous Supernova ASASSN-15lh
- The Low Detection Rate of Pair Instability Supernovae and the Effect of the Core Carbon Fraction
- Highly Luminous Supernovae associated with Gamma-Ray Bursts I.: GRB 111209A/SN 2011kl in the Context of Stripped-Envelope and Superluminous Supernovae
- The supermassive black hole coincident with the luminous transient ASASSN-15lh
- On extreme transient events from rotating black holes and their gravitational wave emission
- OGLE14-073 - a promising pair-instability supernova candidate
- Peculiar Supernovae
- Primary and secondary source of energy in the superluminous supernova 2018ibb