Is GRB afterglow emission intrinsically anisotropic ?
arXiv:1003.1265 · doi:10.1111/j.1365-2966.2010.17616.x
Abstract
The curvature of a relativistic blast wave implies that its emission arrives to observers with a spread in time. This effect is believed to wash out fast variability in the lightcurves of GRB afterglows. We note that the spreading effect is reduced if emission is anisotropic in the rest-frame of the blast wave (i.e. if emission is limb-brightened or limb-darkened). In particular, synchrotron emission is almost certainly anisotropic, and may be strongly anisotropic, depending on details of electron acceleration in the blast wave. Anisotropic afterglows can display fast and strong variability at high frequencies (above the 'fast-cooling' frequency). This may explain the existence of bizarre features in the X-ray afterglows of GRBs, such as sudden drops and flares. We also note that a moderate anisotropy can significantly delay the 'jet break' in the lightcurve, which makes it harder to detect.
14 pages, 5 figures, accepted for publication by MNRAS
References in corpus (9)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Temporal Properties and Morphology
- Mass Fall-back and Accretion in the Central Engine of Gamma-Ray Bursts
- On the Mechanism of Gamma-Ray Burst Afterglows
- Can the early X-ray afterglow of GRBs be explained by a contribution from the reverse shock?
- Weibel instability and associated strong fields in a fully 3D simulation of a relativistic shock
- X-ray flares and the duration of engine activity in gamma-ray bursts
- Did Swift measure GRB prompt emission radii?
- Curvature Effect of a Non-Power-Law Spectrum and Spectral Evolution of GRB X-Ray Tails
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- Dynamics and Afterglow Light Curves of GRB Blast Waves with a Long-lived Reverse Shock
- On the Curvature Effect of a Relativistic Spherical Shell
- On the Implications of Late Internal Dissipation for Shallow-Decay Afterglow Emission and Associated High-Energy Gamma-Ray Signals
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- GROND coverage of the main peak of Gamma-Ray Burst 130925A
- Swift and Fermi observations of X-ray flares: the case of Late Internal Shock
- GRBs from Magnetic Reconnection: Variability and Robustness of Lightcurves
- Accounting for the XRT early steep decay in models of the prompt GRB emission
- A Statistical Study of GRB X-ray Flares: Evidence of Ubiquitous Bulk Acceleration in the Emission Region
- Limits on optical polarization during the prompt phase of GRB 140430A
- An anisotropic minijets model for the GRB prompt emission
- Steep Decay of GRB X-ray Flares: the Result of Anisotropic Synchrotron Radiation
- X-ray flares from dense shells formed in gamma-ray burst explosions
- Relativistic simulations of long-lived reverse shocks in stratified ejecta: the origin of flares in GRB afterglows
- The Signature of Refreshed Shocks in the of Afterglow of GRB030329
- Afterglows after Swift
- Synchro-Curvature Self-Compton Radiation of Electrons in Curved Magnetic Fields
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