The possible ubiquity of energy injection in Gamma-Ray Burst afterglows
arXiv:1212.1486 · doi:10.1111/j.1365-2966.2012.21595.x
Abstract
Since its launch in 2004, the Swift satellite has monitored the X-ray afterglows of several hundred Gamma-Ray Bursts, and revealed that their X-ray light-curves are more complex than previously thought, exhibiting up to three power-law segments. Energy injection into the relativistic blast-wave energizing the burst ambient medium has been proposed most often to be the reason for the X-ray afterglow complexity. We examine 117 light-curve breaks of 98 Swift X-ray afterglows, selected for their high-quality monitoring and well-constrained flux decay rates. Thirty percent of afterglows have a break that can be an adiabatic jet-break, in the sense that there is one variant of the forward-shock emission from a collimated outflow model that can account for both the pre- and post-break flux power-law decay indices, given the measured X-ray spectral slope. If allowance is made for a steady energy injection into the forward-shock, then another 56 percent of X-ray afterglows have a light-curve break that can be explained with a jet-break. The remaining 12 percent that are not jet-breaks, as well as the existence of two breaks in 19 afterglows (out of which only one can be a jet-break), suggest that some X-ray breaks arise from a sudden change in the rate at which energy is added to the blast-wave, and it may well be that a larger fraction of X-ray light-curve breaks are generated by that mechanism. To test the above two mechanisms for afterglow light-curve breaks, we derive comprehensive analytical results for the dynamics of outflows undergoing energy injection and for their light-curves, including closure relations for inverse-Compton afterglows and for the emission from spreading jets interacting with an wind-like ambient medium.
14 pages
References in corpus (10)
- An online repository of Swift/XRT light curves of GRBs
- A Comprehensive Analysis of the Swift/XRT Data: II. Diverse Physical Origins of the Shallow Decay Segment
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Temporal Properties and Morphology
- A Comprehensive Analysis of Swift/XRT Data: III. Jet Break Candidates in X-ray and Optical Afterglow Lightcurves
- The First Survey of X-ray Flares from Gamma Ray Bursts Observed by Swift: Spectral Properties and Energetics
- On the Mechanism of Gamma-Ray Burst Afterglows
- "Late prompt" emission in Gamma Ray Bursts?
- Forming a constant density medium close to long gamma-ray bursts
- Swift GRB Afterglows and the Forward-Shock Model
- X-ray flares, plateaus, and chromatic breaks of GRB afterglows from up-scattered forward-shock emission
Cited by in corpus (6)
- Gamma-ray burst afterglow light curves from a Lorentz-boosted simulation frame and the shape of the jet break
- Peaks of optical and X-ray afterglow light-curves
- The 7.2/3 Years Collection of Well-Monitored Fermi-LAT GRB Afterglows
- X-ray Afterglows from the Gamma-Ray Burst "Large(r)-Angle" Emission
- The energy budget of GRBs based on updated prompt \& afterglow observations
- Modeling the Multi-band Afterglows of GRB 060614 and GRB 060908: Further Evidence for a Double Power-Law Hard Electron Energy Spectrum