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The nebular spectra of the hypernova SN 1998bw and evidence for asymmetry

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arxiv astro-ph/0106095 v1 pith:AWHZLFBP submitted 2001-06-06 astro-ph

The nebular spectra of the hypernova SN 1998bw and evidence for asymmetry

classification astro-ph
keywords linesnebulardifferentfeiispectraepochexplosionhypernova
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The nebular spectra of the energetic Type Ic supernova SN1998bw (hypernova) are studied. The transition to the nebular phase occurred at an epoch of about 100 days after outburst, which is assumed to coincide with GRB980425. Early in the nebular epoch the spectra show the characteristics of a typical SN Ic spectrum, with strong lines of [OI], CaII and MgI], and lines of [FeII]. However, the [FeII] lines are unusually strong for a SN Ic. Also, lines of different elements have different widths, indicating different expansion velocities. In particular, iron appears to expand more rapidly than oxygen. Furthermore, the [OI] nebular lines decline more slowly than the [FeII] ones, signalling deposition of gamma-rays in a slowly-moving O-dominated region. These facts suggest that the explosion was aspherical. The absence of [FeIII] nebular lines can be understood if the ejecta are significantly clumped. A schematic picture of what this very unusual stellar explosion may have looked like is presented.

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Cited by 2 Pith papers

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

  1. EP260321a/SN 2026gzf: The Faintest Shock Breakout Associated with a Broad-Lined Supernova

    astro-ph.HE 2026-06 unverdicted novelty 7.0

    EP260321a is the faintest observed shock breakout tied to a broad-lined Type Ic supernova, interpreted as a choked weak outflow from a stripped star.

  2. EP260321a/SN 2026gzf: The Faintest Shock Breakout Associated with a Broad-Lined Supernova

    astro-ph.HE 2026-06 unverdicted novelty 4.0

    EP260321a is identified as the faintest shock breakout X-ray transient associated with broad-lined Ic supernova SN 2026gzf, interpreted as originating from a mildly relativistic weak outflow choked inside the progenitor star.