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A new gamma-ray burst classification scheme from GRB 060614.

N Gehrels1, J P Norris, S D Barthelmy

  • 1NASA/Goddard Space Flight Center, Greenbelt, Maryland 20771, USA. gehrels@milkyway.gsfc.nasa.gov

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|December 22, 2006
PubMed
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A nearby gamma-ray burst (GRB) challenges existing classifications. This long-duration event lacked a supernova, suggesting a new GRB category may be needed.

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Area of Science:

  • Astrophysics
  • Cosmic explosions
  • Gamma-ray astronomy

Background:

  • Gamma-ray bursts (GRBs) are classified into long-duration and short-duration types based on their emission duration, with distinct origins and associated phenomena.
  • Long-duration GRBs are typically linked to massive star collapse (collapsars) in star-forming regions and often accompanied by supernovae.
  • Short-duration GRBs are associated with compact object mergers (neutron star-neutron star or neutron star-black hole) in less active galactic regions, and typically lack supernovae.

Purpose of the Study:

  • To investigate the nature of the peculiar gamma-ray burst GRB 060614.
  • To determine if GRB 060614 fits into the established long or short GRB classifications.
  • To explore the implications of GRB 060614's properties for current GRB formation models.

Main Methods:

  • Analysis of GRB 060614's duration, temporal lag, and peak luminosity.
  • Deep optical observations to search for an accompanying supernova.
  • Comparison of GRB 060614's characteristics with those of known long and short GRBs.

Main Results:

  • GRB 060614 exhibited a duration of approximately 102 seconds, aligning with long-duration GRBs.
  • Its temporal lag and peak luminosity were characteristic of short-duration GRBs.
  • Deep optical observations definitively excluded the presence of an accompanying supernova.

Conclusions:

  • GRB 060614 presents a unique combination of long duration and the absence of a supernova, challenging established GRB classification schemes.
  • The findings suggest that current models for collapsars and compact object mergers may not fully explain all observed GRB phenomena.
  • This event necessitates a re-evaluation of GRB origins and potentially the introduction of a new classification bridging long and short GRBs.