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SN~2015da: Late-time observations of a persistent superluminous Type~IIn supernova with post-shock dust formation

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arxiv 2312.00253 v1 pith:YZXLK4PN submitted 2023-11-30 astro-ph.HE astro-ph.SR

classification astro-ph.HEastro-ph.SR
keywords explosionsn2015daenergyhighmsunpeakpre-snsuperluminous
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abstract

We present photometry and spectroscopy of the slowly evolving superluminous Type IIn SN2015da. SN2015da is extraordinary for its very high peak luminosity, and also for sustaining a high luminosity for several years. Even at 8\,yr after explosion, SN2015da remains as luminous as the peak of a normal SNII-P. The total radiated energy integrated over this time period (with no bolometric correction) is at least 1.6 FOE. Including a mild bolometric correction, adding kinetic energy of the expanding cold dense shell of swept-up circumstellar material (CSM), and accounting for asymmetry, the total explosion kinetic energy was likely 5-10 FOE. Powering the light curve with CSM interaction requires an energetic explosion and 20 Msun of H-rich CSM, which in turn implies a massive progenitor system above 30 Msun. Narrow P Cyg features show steady CSM expansion at 90 km/s, requiring a high average mass-loss rate of roughly 0.1 Msun/yr sustained for 2 centuries before explosion (although ramping up toward explosion time). No current theoretical model for single-star pre-SN mass loss can account for this. The slow CSM, combined with broad wings of H$\alpha$ indicating H-rich material in the unshocked ejecta, disfavor a pulsational pair instability model for the pre-SN mass loss. Instead, violent pre-SN binary interaction is a likely cuprit. Finally, SN2015da exhibits the characteristic asymmetric blueshift in its emission lines from shortly after peak until the present epoch, adding another well-studied superluminous SNeIIn with unambiguous evidence of post-shock dust formation.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The bright, dusty aftermath of giant eruptions & H-rich supernovae. Late interaction of supernova shocks & dusty circumstellar shells

    astro-ph.SR 2025-02 conditional novelty 6.0 of 10

    Simulations show dust survival after a supernova depends strongly on circumstellar shell geometry and eruption-to-explosion timing, with short gaps preserving 20-75% of erupted dust while long gaps and bipolar shells ...

  2. A Multiwavelength Autopsy of the Interacting IIn Supernova 2020ywx: Tracing its Progenitor Mass-Loss History for 100 Years before Death

    astro-ph.HE 2024-12 conditional novelty 5.0 of 10

    SN 2020ywx's progenitor lost 0.001 to 0.01 solar masses per year for at least 100 years before explosion, with asymmetric surrounding material and newly formed dust pointing to binary interaction.

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