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What are Published X-ray lightcurves telling us about Young Supernova Expansion?

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arxiv 1109.2616 v1 pith:EN4GS74P submitted 2011-09-12 astro-ph.HE

classification astro-ph.HE
keywords x-raymediumsteadyexpansionwindappeardensityluminosity
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abstract

Massive stars lose mass in the form of stellar winds and outbursts. This material accumulates around the star. When the star explodes as a supernova (SN) the resulting shock wave expands within this circumstellar medium. The X-ray emission resulting from the interaction depends, among other parameters, on the density of this medium, and therefore the variation in the X-ray luminosity can be used to study the variation in the density structure of the medium. In this paper we explore the X-ray emission and lightcurves of all known SNe, in order to study the nature of the medium into which they are expanding. In particular we wish to investigate whether young SNe are expanding into a steady wind medium, as is most often assumed in the literature. We find that in the context of the theoretical arguments that have been generally used in the literature, many young SNe, and especially those of Type IIn, which are the brightest X-ray luminosity class, do not appear to be expanding into steady winds. Some IIns appear to have very steep X-ray luminosity declines, indicating density declines much steeper than r$^{-2}$. However, other IIns show a constant or even increasing X-ray luminosity over periods of months to years. Many other SNe do not appear to have declines consistent with expansion in a steady wind. SNe with lower X-ray luminosities appear to be more consistent with steady wind expansion, although the numbers are not large enough to make firm statistical comments. The numbers do indicate that the expansion and density structure of the circumstellar medium must be investigated before assumptions can be made of steady wind expansion. Unless a steady wind can be shown, mass-loss rates deduced using this assumption may need to be revised.

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Cited by 2 Pith papers

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    astro-ph.HE 2025-08 conditional novelty 7.0 of 10

    SN 2023uqf, a rare interacting Type Ibn supernova found coincident with neutrino IC231004A, is the first observational evidence that interacting supernovae are hadronic accelerators.

  2. On the X-ray Emission From Supernovae, and Implications for the Mass-Loss Rates of their Progenitor Stars

    astro-ph.HE 2025-05 conditional novelty 3.0 of 10

    A compilation of 115 supernova X-ray light curves and selected spectra concludes that Type Ib/c and low-mass-loss Type IIP supernovae emit non-thermally, while Type IIn supernovae emit thermally, with inferred progeni...

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