English

Stripped-envelope supernova light curves argue for central engine activity

High Energy Astrophysical Phenomena 2024-04-18 v1

Abstract

The luminosity of ``stripped-envelope supernovae'', a common type of stellar explosions, has been generally thought to be driven by the radioactive decay of the nickel synthesized in the explosion and carried in its ejecta. Additional possible energy sources have been previously suggested, but these claims have been statistically inconclusive or model-dependent. Here, we analyse the energy budget of a sample of 54 well-observed stripped-envelope supernovae of all sub-types, and present statistically significant, largely model-independent, observational evidence for a non-radioactive power source in most of them (and possibly in all). We consider various energy sources, or alternatively, plausible systematic errors, that could drive this result, and conclude that the most likely option is the existence of a ``central engine'', such as a magnetar (a highly magnetic neutron star) or an accreting neutron star or black hole, operating over hours to days after the explosion. We infer from the observations constraints on the engines, finding that if these are magnetars, then their initial magnetic fields are about 101510^{15}\,G and their initial rotation period is 1--100 ms, implying that stripped-envelope supernovae could be the formative events of magnetars.

Keywords

Cite

@article{arxiv.2404.10846,
  title  = {Stripped-envelope supernova light curves argue for central engine activity},
  author = {Ósmar Rodríguez and Ehud Nakar and Dan Maoz},
  journal= {arXiv preprint arXiv:2404.10846},
  year   = {2024}
}
R2 v1 2026-06-28T15:56:19.195Z