SN 2009ib: A Type II-P Supernova with an Unusually Long Plateau
arXiv:1504.02404 · doi:10.1093/mnras/stv857
Abstract
We present optical and near-infrared photometry and spectroscopy of SN 2009ib, a Type II-P supernova in NGC 1559. This object has moderate brightness, similar to those of the intermediate-luminosity SNe 2008in and 2009N. Its plateau phase is unusually long, lasting for about 130 days after explosion. The spectra are similar to those of the subluminous SN 2002gd, with moderate expansion velocities. We estimate the Ni mass produced as $0.046 \pm 0.015\,{\rm M}_{\sun}$. We determine the distance to SN 2009ib using both the expanding photosphere method (EPM) and the standard candle method. We also apply EPM to SN 1986L, a type II-P SN that exploded in the same galaxy. Combining the results of different methods, we conclude the distance to NGC 1559 as Mpc. We examine archival, pre-explosion images of the field taken with the Hubble Space Telescope, and find a faint source at the position of the SN, which has a yellow colour ( mag). Assuming it is a single star, we estimate its initial mass as $M_{\rm ZAMS}=20\,{\rm M}_{\sun}$. We also examine the possibility, that instead of the yellow source the progenitor of SN 2009ib is a red supergiant star too faint to be detected. In this case we estimate the upper limit for the initial zero-age main sequence mass of the progenitor to be $\sim 14-17\,{\rm M}_{\sun}$. In addition, we infer the physical properties of the progenitor at the explosion via hydrodynamical modelling of the observables, and estimate the total energy as ~erg, the pre-explosion radius as $\sim 400\,{\rm R}_{\sun}$, and the ejected envelope mass as $\sim 15\,{\rm M}_{\sun}$, which implies that the mass of the progenitor before explosion was $\sim 16.5-17\,{\rm M}_{\sun}$.
18 pages plus 7 page appendix; accepted version (MNRAS), v3: a reference and typos corrected
References in corpus (16)
- Modules for Experiments in Stellar Astrophysics (MESA)
- The death of massive stars - I. Observational constraints on the progenitors of type II-P supernovae
- Determining the Type, Redshift, and Age of a Supernova Spectrum
- The effect of massive binaries on stellar populations and supernova progenitors
- 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
- The Standardized Candle Method for Type II Plateau Supernovae
- Towards a Cosmological Hubble Diagram for Type II-P Supernovae
- 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
- ESC Supernova spectroscopy of non-ESC targets
- The Type IIP Supernova 2012aw in M95: hydrodynamical modelling of the photospheric phase from accurate spectrophotometric monitoring
- Distance estimate and progenitor characteristics of SN 2005cs in M51
- Distance determination to 12 Type II Supernovae using the Expanding Photosphere Method
- Ejecta and progenitor of the low-luminosity Type IIP supernova 2003Z
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