Exponentially Decaying Extended Emissions Following Short Gamma-Ray Bursts with Possible Luminosity -- E-folding Time Correlation
arXiv:1904.10775 · doi:10.3847/1538-4357/ab1bd6
Abstract
The origin of extended emissions following prompt emissions of short gamma-ray bursts (SGRBs) is in mystery. The long-term activity of the extended emission is responsible for promising electromagnetic counterparts to gravitational waves and, so that it may be a key to uncovering the progenitor of SGRBs. We investigate the early X-ray light curves of 26 SGRBs with known redshifts observed with the X-Ray Telescope aboard the {\it Neil Gehrels Swift Observatory} ({\it Swift}). We find that the exponential temporal decay model is able to describe the extended emissions comprehensively with a rest-frame e-folding time of 20 -- 200 seconds. We also estimate the isotropic equivalent energies of the extended emission with the exponential decay model and of the prompt emission, compared with those of the prompt emission. Then, it is revealed that the extended emission is 0 -- 3 orders of magnitude less powerful than the prompt emission. We find a strong correlation between the expected maximum luminosity and e-folding time which can be described by a power-law with an index of and whose chance probability of if there is no observation bias of {\it Swift}. The exponential temporal decay may be interpreted to come from the spin-down time scale of the rotation energy of a highly magnetized neutron star, and/or fallback accretion onto a disk surrounding a black hole with an exponentially decaying magnetic flux by magnetic reconnection.
22 pages, 6 figures, accepted for publication in ApJ
References in corpus (15)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- An online repository of Swift/XRT light curves of GRBs
- Short Duration Gamma-Ray Bursts with Extended Emission from Proto-Magnetar Spin-Down
- Merger of binary neutron stars to a black hole: Disk mass, short gamma-ray bursts, and quasinormal mode ringing
- GRB Radiative Efficiencies Derived from the Swift Data: GRBs vs. XRFs, Long vs. Short
- The Millisecond Magnetar Central Engine in short GRBs
- Fallback accretion in the aftermath of a compact binary merger
- The X-ray afterglow of the short gamma ray burst 050724
- Discovery of the afterglow and host galaxy of the low redshift short GRB 080905A
- Prior Emission Model for X-ray Plateau Phase of Gamma-Ray Burst Afterglows
- On the Spectral Lags of the Short Gamma-Ray Bursts
- Evidence of Exponential Decay Emission in the Swift Gamma-ray Bursts
- Bimodal Long-Lasting Components in Short Gamma-Ray Bursts: Promising Electromagnetic Counterparts to Neutron Star Binary Mergers
- Long-Lasting Black-Hole Jets in Short Gamma-Ray Bursts
- Gamma Ray Bursts with Extended Emission Observed with BATSE
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- External Inverse-Compton Emission Associated with Extended and Plateau Emission of Short Gamma-Ray Bursts: Application to GRB 160821B
- Multivariate analysis of BATSE gamma-ray burst properties using skewed distributions
- High-energy neutrino emission associated with gravitational-wave signals: effects of cocoon photons and constraints on late-time emission
- Shared Properties of Merger-driven Long-duration Gamma-Ray Bursts
- Predicting Multiwavelength Emission Associated with X-Ray Flares and Extended Emission of Gamma-Ray Bursts