Correlation between the Peak Spectral Energy of Gamma-Ray Bursts and the Peak Luminosity of the Underlying Supernovae: Implication for the Nature of GRB-SN Connection
arXiv:astro-ph/0608315 · doi:10.1111/j.1365-2966.2006.10943.x
Abstract
In this paper we present a correlation between the peak spectral energy of gamma-ray bursts (GRBs) and the peak bolometric luminosity of the underlying supernovae (SNe), based on a sample of four pairs of GRBs-SNe with spectroscopically confirmed connection. Combining it with the well-known relation between the peak spectral energy and the isotropic equivalent energy of GRBs, we obtain an upper limit on the isotropic energy of GRBs, which is \approx 10^{52} erg (L_{SN,peak}/10^{43} erg s^{-1})^{10}, where L_{SN,peak} is the peak bolometric luminosity of the SNe. Our results suggest that the critical parameter determining the GRB-SN connection is the peak luminosity of SNe, rather than the feature of the SN spectra and/or the SN explosion energy as commonly hypothesized. Since it is generally believed that the peak luminosity of SNe powered by radioactive decays is related to the amount of 56Ni produced in the SN explosion, the mass of 56Ni may be a key physical factor for understanding the nature of GRBs and their connection with SNe. Application of our relation to Type Ibc SNe with normal peak luminosities indicates that if those normal SNe have GRBs accompanying them, the GRBs would be extremely soft and sub-energetic in gamma-rays, and hence easier to detect with X-ray or UV detectors than with gamma-ray detectors.
10 pages, 8 figures and 1 table. Accepted by MNRAS
References in corpus (11)
- An optical supernova associated with the X-ray flash XRF 060218
- A neutron-star-driven X-ray flash associated with supernova SN 2006aj
- Early-Time Photometry and Spectroscopy of the Fast Evolving SN 2006AJ Associated with GRB 060218
- SN 2004aw: Confirming Diversity of Type Ic Supernovae
- GRB 060218/SN 2006aj: A Gamma-Ray Burst and Prompt Supernova at z=0.0335
- Supernova 2006aj and the associated X-Ray Flash 060218
- Models for the Type Ic Hypernova SN 2003lw associated with GRB 031203
- SN 2006aj and the nature of low-luminosity gamma-ray bursts
- The properties of the "standard" type Ic supernova 1994I from spectral models
- Evidence for a Supernova Associated with the X-ray Flash 020903
- The Optical/Near-Infrared Light Curves of SN 2002ap for the First 1.5 Years after Discovery
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- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
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- Star Formation History up to z = 7.4: Implications for Gamma-Ray Bursts and the Cosmic Metallicity Evolution
- A New Survey for Giant Arcs
- Shock Breakout in Type Ibc Supernovae and Application to GRB 060218/SN 2006aj
- The X-Ray Transient 080109 in NGC 2770: an X-Ray Flash Associated with a Normal Core-Collapse Supernova
- The quest for new correlations in the realm of the Gamma-Ray Burst -- Supernova connection
- X-Ray Flares of Gamma-Ray Bursts: Quakes of Solid Quark Stars?
- The Broad-lined Ic Supernova ZTF18aaqjovh (SN 2018bvw): An Optically-discovered Engine-driven Supernova Candidate with Luminous Radio Emission
- GRB 050822: Detailed analysis of an XRF observed by Swift
- Probability for chance coincidence of a gamma-ray burst with a galaxy on the sky