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The early UV/Optical emission from core-collapse supernovae

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arxiv 1002.3414 v6 pith:5LRWFB74 submitted 2010-02-18 astro-ph.HE astro-ph.CO

classification astro-ph.HEastro-ph.CO
keywords earlyemissionprogenitorradiusenvelopemodelopticaluncertainty
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We derive a simple approximate model describing the early, hours to days, UV/optical supernova emission, which is produced by the expansion of the outer <~0.01 solar mass part of the shock-heated envelope, and precedes the optical emission driven by radioactive decay. Our model includes an approximate description of the time dependence of the opacity (due mainly to recombination), and of the deviation of the emitted spectrum from a black body spectrum. We show that the characteristics of the early UV/O emission constrain the radius of the progenitor star, its envelope composition, and the ratio of the ejecta energy to its mass, E/M. For He envelopes, neglecting the effect of recombination may lead to an over estimate of progenitor radius by more than an order of magnitude. We also show that the relative extinction at different wavelengths may be inferred from the light-curves at these wave-lengths, removing the uncertainty in the estimate of progenitor radius due to reddening (but not the uncertainty in E/M due to uncertainty in absolute extinction). The early UV/O observations of the type Ib SN2008D and of the type IIp SNLS-04D2dc are consistent with our model predictions. For SN2008D we find progenitor radius to be approx. 10^11 cm, and an indication that the He envelope contains a significant C/O fraction.

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Cited by 2 Pith papers

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    astro-ph.HE 2026-06 unverdicted novelty 8.0 of 10

    JWST spectra of SN 2024abup show CO, C, O, and Mg features plus possible dust emission, with no clear r-process signatures identified via SUMO modeling.

  2. SN 2020bij and a Possible Slow-Rise High-Velocity Subclass of Type IIP Supernovae

    astro-ph.HE 2026-07 unverdicted novelty 6.0 of 10

    SN 2020bij and four other Type IIP SNe with slow-rising light curves and high velocities are modeled with weak to no CSM interaction, suggesting a new subclass linked to confined CSM.

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