Light Curve Modeling of Superluminous Supernova 2006gy: Collision between Supernova Ejecta and Dense Circumstellar Medium
arXiv:1204.6109 · doi:10.1093/mnras/sts075
Abstract
We show model light curves of superluminous supernova 2006gy on the assumption that the supernova is powered by the collision of supernova ejecta and its dense circumstellar medium. The initial conditions are constructed based on the shock breakout condition, assuming that the circumstellar medium is dense enough to cause the shock breakout within it. We perform a set of numerical light curve calculations by using a one-dimensional multigroup radiation hydrodynamics code STELLA. We succeeded in reproducing the overall features of the early light curve of SN 2006gy with the circumstellar medium whose mass is about 15 Msun (the average mass-loss rate ~ 0.1 Msun/yr). Thus, the progenitor of SN 2006gy is likely a very massive star. The density profile of the circumstellar medium is not well constrained by the light curve modeling only, but our modeling disfavors the circumstellar medium formed by steady mass loss. The ejecta mass is estimated to be comparable to or less than 15 Msun and the explosion energy is expected to be more than 4e51 erg. No 56Ni is required to explain the early light curve. We find that the multidimensional effect, e.g., the Rayleigh-Taylor instability, which is expected to take place in the cool dense shell between the supernova ejecta and the dense circumstellar medium, is important in understanding supernovae powered by the shock interaction. We also show the evolution of the optical and near-infrared model light curves of high-redshift superluminous supernovae. They can be potentially used to identify SN 2006gy-like superluminous supernovae in the future optical and near-infrared transient surveys.
18 pages, 19 figures, 2 tables, accepted by Monthly Notices of the Royal Astronomical Society
References in corpus (24)
- Physical Properties of Wolf-Rayet Stars
- Pulsational pair instability as an explanation for the most luminous supernovae
- Theoretical light curves for deflagration models of Type Ia supernova
- SN 2006gy: An extremely luminous supernova in the galaxy NGC 1260
- SN 2005ap: A Most Brilliant Explosion
- Shell-shocked diffusion model for the light curve of SN2006gy
- The Unique Type Ib Supernova 2005bf at Nebular Phases: A Possible Birth Event of A Strongly Magnetized Neutron Star
- Red supergiants as potential Type IIn supernova progenitors: Spatially resolved 4.6 micron CO emission around VY CMa and Betelgeuse
- How much 56Ni can be produced in Core-Collapse Supernovae? : Evolution and Explosions of 30 - 100 Msun Stars
- Luminous Blue Variables as the progenitors of supernovae with quasi-periodic radio modulations
- Progenitor Diagnostics for Stripped Core-Collapse Supernovae: Measured Metallicities at Explosion Sites
- A Massive Progenitor of the Luminous Type IIn Supernova 2010jl
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- Young and Massive Binary Progenitors of Type Ia Supernovae and Their Circumstellar Matter
- SN 2005 gj: Evidence for LBV supernovae progenitors?
- Numerical models of collisions between core-collapse supernovae and circumstellar shells
- A Core-Collapse Supernova Model for the Extremely Luminous Type Ic Supernova 2007bi: An Alternative to the Pair-Instability Supernova Model
- The WR population predicted by massive single star and by massive binary evolution
- Late-time observations of SN2006gy: Still Going Strong
- Supernova SN2006gy as a first ever Quark Nova?
- A runaway collision in a young star cluster as the origin of the brightest supernova
- Type IIn supernovae at z ~ 2 from archival data
- Supernova Explosions inside Carbon-Oxygen Circumstellar Shells
- Detecting z > 2 Type IIn Supernovae
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- Pulsational Pair-Instability Supernovae
- Spectroscopy of superluminous supernova host galaxies. A preference of hydrogen-poor events for extreme emission line galaxies
- Unifying Type II Supernova Light Curves with Dense Circumstellar Material
- Numerical simulations of super-luminous supernovae of type IIn
- Hydrogen-Poor Superluminous Supernovae from the Pan-STARRS1 Medium Deep Survey
- The hydrogen-poor superluminous supernova iPTF13ajg and its host galaxy in absorption and emission
- Zooming In on the Progenitors of Superluminous Supernovae With the HST
- Detection of the Gravitational Lens Magnifying a Type Ia Supernova
- Electron-capture supernovae exploding within their progenitor wind
- On the early-time excess emission in hydrogen-poor superluminous supernovae
- Interacting supernovae from photoionization-confined shells around red supergiant stars
- Cosmic ray production in supernovae
- Supernova ejecta with a relativistic wind from a central compact object: a unified picture for extraordinary supernovae
- Pulsations of red supergiant pair-instability supernova progenitors leading to extreme mass loss
- A Unified Energy-Reservoir Model Containing Contributions from Ni and Neutron Stars and Its Implication to Luminous Type Ic Supernovae
- A Monte Carlo Approach to Magnetar-powered Transients: I. Hydrogen-deficient Superluminous Supernovae
- Constraining massive star activities in the final years through properties of supernovae and their progenitors
- Constraining Physical Properties of Type IIn Supernovae through Rise Times and Peak Luminosities
- Circumstellar Interaction Models for the Bolometric Light Curve of SN 2017egm
- Taking stock of SLSN and LGRB host galaxy comparison using a complete sample of LGRBs
- Superluminous transients at AGN centers from interaction between black-hole disk winds and broad-line region clouds
- SN 2012aa - a transient between Type Ibc core-collapse and superluminous supernovae
- Magnetar-Powered Supernovae in Two Dimensions. II. Broad-Line Supernovae Ic
- Finding the First Cosmic Explosions. IV. 90 - 140 M Pair-Instability Supernovae
- The Energy Sources of Superluminous Supernovae
- SN 2009ip: Constraining the latest explosion properties by its late-phase light curve
- Study of Supernovae Important for Cosmology
- Modeling of interactions between supernovae ejecta and aspherical circumstellar environments
- Synthetic spectra of energetic core-collapse supernovae and the early spectra of SN 2007bi and SN 1999as
- A Systematic Study Of Superluminous Supernova Lightcurve Models Using Clustering
- Explaining unusual line profiles of SN 2006gy
- Super Luminous Supernova and Gamma Ray Bursts