The progenitor of SN 2011ja: Clues from circumstellar interaction
arXiv:1302.7067 · doi:10.1088/0004-637X/774/1/30
Abstract
Massive stars, possibly red supergiants, which retain extended hydrogen envelopes until core collapse, produce Type II Plateau (IIP) supernovae. The ejecta from these explosions shock the circumstellar matter originating from the mass loss of the progenitor during the final phases of its life. This interaction accelerates particles to relativistic energies which then lose energy via synchrotron radiation in the shock-amplified magnetic fields and inverse Compton scattering against optical photons from the supernova. These processes produce different signatures in the radio and X-ray part of the electromagnetic spectrum. Observed together, they allow us to break the degeneracy between shock acceleration and magnetic field amplification. In this work we use X-rays observations from the Chandra and radio observations from the ATCA to study the relative importance of processes which accelerate particles and those which amplify magnetic fields in producing the non-thermal radiation from SN 2011ja. We use radio observations to constrain the explosion date. Multiple Chandra observations allow us to probe the history of variable mass loss from the progenitor. The ejecta expands into a low density bubble followed by interaction with a higher density wind from a red supergiant consistent with ZAMS mass greater than 16 solar masses. Our results suggest that a fraction of type IIP supernovae may interact with circumstellar media set up by non-steady winds.
9 pages, 5 figures, updated
References in corpus (15)
- Modules for Experiments in Stellar Astrophysics (MESA)
- The death of massive stars - I. Observational constraints on the progenitors of type II-P supernovae
- Circumstellar Emission from Type Ib and Ic Supernovae
- An outburst from a massive star 40 days before a supernova explosion
- The progenitor mass of the Type IIP supernova SN 2004et from late-time spectral modeling
- Photometric and spectroscopic evolution of the type IIP supernova SN 2004et
- On Absorption by Circumstellar Dust, With the Progenitor of SN2012aw as a Case Study
- Supernova 1996cr: SN 1987A's Wild Cousin?
- Type IIP Supernova SN 2004et: A Multi-Wavelength Study in X-Ray, Optical and Radio
- SN 2007bg: The Complex Circumstellar Environment Around One of the Most Radio-Luminous Broad-Lined Type Ic Supernovae
- Injection and Acceleration of Electrons at A Strong Shock: Radio and X-ray Study of Young Supernova 2011dh
- Progenitors of Recombining Supernova Remnants
- X-Ray emission from SN 2004dj: A Tale of Two Shocks
- Baryon Loaded Relativistic Blastwaves in Supernovae
- Chandra Observations of SN 2004et and the X-ray Emission of Type IIp Supernovae
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- SNaX - A Database of Supernova X-ray Lightcurves
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- Theoretical X-ray light curves of young SNe II: the example of SN 2013ej
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- XSNAP: An X-ray Supernova Analysis Pipeline with Application to the Type II Supernova 2024ggi