Observational Implications of a Plerionic Environment for GRBs
arXiv:astro-ph/0208156 · doi:10.1046/j.1365-8711.2003.06296.x
Abstract
We consider GRBs that occur inside pulsar wind bubbles (PWBs), in the context of the supranova model, where initially a supernova explosion takes place, leaving behind a supra-massive neutron star (SMNS), which eventually loses its rotational energy and collapses to a black hole, triggering a GRB explosion. The most natural mechanism by which the SMNS can lose its rotational energy is through a strong pulsar type wind, between the supernova and the GRB events, which is expected to create a PWB. We analyze in some detail the observational implications of such a plerionic environment on the afterglow (AG) and prompt GRB emissions, and the prospect for direct detection of the plerion emission. We find that for a simple spherical model, GRBs with iron lines detected in the X-ray AG should not have a detectable radio afterglow, and should have small jet break times and non-relativistic transition times, in disagreement with observations for some of the GRBs with X-ray lines. These discrepancies with the observations may be reconciled by resorting to a non-spherical geometry, where the PWB is elongated along the polar axis. We find that lack of detection of the plerion emission provides interesting constraints on the model parameters. Finally, we predict that the inverse Compton upscattering of the PWB photons by the relativistic electrons of the AG (external Compton, EC) should lead to high energy emission during the early AG that might explain the GeV photons detected by EGRET for a few GRBs, and should be detectable by future missions such as GLAST.
38 pages, 2 figures. A few changes to match the version accepted for publication in MNRAS
Cited by in corpus (22)
- Gamma-Ray Bursts: Progress, Problems & Prospects
- Neutrinos From Individual Gamma-Ray Bursts in the BATSE Catalog
- High Energy Neutrinos from Gamma Ray Bursts
- Constraining the Structure of GRB Jets Through the Afterglow Light Curves
- Opacity Build-up in Impulsive Relativistic Sources
- Gamma-Ray Burst Science in the Era of the Cherenkov Telescope Array
- On the Implications of Late Internal Dissipation for Shallow-Decay Afterglow Emission and Associated High-Energy Gamma-Ray Signals
- On the generation of UHECRs in GRBs: a reappraisal
- Explaining the High Energy Spectral Component in GRB 941017
- Single- and Two-Component GRB Spectra in the Fermi GBM-LAT Energy Range
- Very-High-Energy Gamma-Ray Signal from Nuclear Photodisintegration as a Probe of Extragalactic Sources of Ultrahigh-Energy Nuclei
- Constraints on Very High Energy Emission from GRB 130427A
- High-energy emission as a test of the prior emission model for gamma-ray burst afterglows
- Neutrinos from Gamma-Ray Bursts in Pulsar Wind Bubbles: \sim 10^{16} eV
- Flaring up: radio diagnostics of the kinematic, hydrodynamic and environmental properties of GRBs
- Very High Energy Observations of Gamma-Ray Burst Locations with the Whipple Telescope
- Prospects for GeV-TeV detection of short gamma-ray bursts with extended emission
- Gamma-Ray Burst high energy emission from Internal Shocks
- Neutrinos from Pulsar Wind Bubbles as Precursors to Gamma-Ray Bursts
- On the existence of a luminosity threshold of GRB jets in massive stars
- Prospects for detection of very high-energy emission from GRB in the context of the external shock model
- Probing Massive Stars Around Gamma-Ray Burst Progenitors