Prior Emission Model for X-ray Plateau Phase of Gamma-Ray Burst Afterglows
نویسنده
چکیده
The two-component emission model to explain the plateau phase of the Xray afterglows of gamma-ray bursts (GRBs) is proposed. One component, which is responsible for the plateau and subsequent normal decay phase of the X-ray afterglow, is the prior emission via outflow ejected from the central engine before the main burst. The other is the main outflow, which causes the prompt GRB emission and the initial steep decay phase of the X-ray afterglow. In this model, the transition from the plateau to the subsequent normal decay phase is an artifact of the choice of the zero of time. For events with distinct plateau phase, the central engine is active 10–10 sec before the launch of the main outflow. According to this model, a prior emission in the X-ray and/or optical bands 10– 10 sec before the prompt GRB emission is possibly seen, which will be tested by near-future instruments such as Monitor of All-sky X-ray Image (MAXI), WIDe-field telescope for GRB Early Timing (WIDGET), and so on. Subject headings: gamma rays: bursts —gamma rays: theory
منابع مشابه
High-energy emission as a test of the prior emission model for gamma-ray burst afterglows
We study high-energy gamma-ray afterglow emission from gamma-ray bursts (GRBs) in the prior emission model, which is proposed to explain the plateau phase of the X-ray afterglow. This model predicts the high-energy gamma-ray emission when the prompt GRB photons from the main flow are up-scattered by relativistic electrons accelerated at the external shock due to the prior flow. The expected spe...
متن کاملThe dust scattering model can not explain the shallow X - ray decay in GRB afterglows
A dust scattering model was recently proposed to explain the shallow X-ray decay (plateau) observed prevalently in Gamma-Ray Burst (GRB) early afterglows. In this model the plateau is the scattered prompt X-ray emission by the dust located close (about 10 to a few hundred pc) to the GRB site. In this paper we carefully investigate the model and find that the scattered emission undergoes strong ...
متن کاملObservational Signatures of High-Energy Emission during the Shallow Decay Phase of GRB X-Ray Afterglows
The widely existing shallow decay phase of the X-ray afterglows of gammaray bursts (GRBs) is generally accepted to be due to long-lasting energy injection. The outflows carrying the injecting energy, based on the component that is dominative in energy, fall into two possible types: baryon-dominated and leptondominated ones. The former type of outflow could be ejecta that is ejected during the p...
متن کاملThe plateau phase of gamma-ray burst afterglows in the thick-shell scenario
We present analytic calculations of synchrotron radiation from the forward and the reverse shock of gamma-ray burst blast waves, in the thick-shell scenario (i.e. when the reverse shock is relativistic). We show that this scenario can naturally account for the plateau phase, observed early in the afterglows of about half the bursts detected by Swift. We generalize our approach to include power-...
متن کاملEvidence for an anticorrelation between the duration of the shallow decay phase of GRB X-ray afterglows and redshift
Context. One of the most intriguing features discovered by Swift is a plateau phase in the X-ray flux decay of about 70% of the afterglows of gamma-ray bursts (GRBs). The physical origin of this feature is still being debated. Aims. We constrain the proposed interpretations, based on the intrinsic temporal properties of the plateau phase. Methods. We selected and analyzed all the Swift/XRT GRB ...
متن کامل