Gamma Ray Bursts Cook Book I: Formulation
arXiv:0812.3277 · doi:10.1111/j.1365-2966.2009.14927.x
Abstract
Since the suggestion of relativistic shocks as the origin of gamma-ray bursts (GRBs) in early 90's, the mathematical formulation of this process has stayed at phenomenological level. One of the reasons for the slow development of theoretical works in this domain has been the simple power-law behaviour of the afterglows hours or days after the prompt gamma-ray emission. Nowadays with the launch of the Swift satellite, gamma-ray bursts can be observed in multi-wavelength from a few tens of seconds after trigger onward. These observations have leaded to the discovery of features unexplainable by the simple formulation of the shocks and emission processes used up to now. But "devil is in details" and some of these features may be explained with a more detailed formulation of phenomena and without adhoc addition of new processes. Such a formulation is the goal of this work. We present a consistent formulation of the collision between two spherical relativistic shells. The model can be applied to both internal and external shocks. Notably, we propose two phenomenological models for the evolution of the emitting region during the collision. One of these models is more suitable for the internal shocks and the other for the external collisions. We calculate radiation flux, lags, and hardness ratios. One of our aims has been a formulation enough complex to include the essential processes, but enough simple such that the data can be directly compared with the theory to extract the value and evolution of physical quantities. To accomplish this goal, we also suggest a procedure for extracting parameters of the model from data. In a following paper we numerically calculate the evolution of some simulated models and compare their features with the properties of the observed gamma-ray bursts.(abbreviated)
23 pages, 1 figure(MNRAS LaTex format). v2: an error in calculation corrected, few references are added, typos removed, submitted version
References in corpus (47)
- Gamma-Ray Bursts in the Swift Era
- Swift detects a remarkable gamma-ray burst, GRB 060614, that introduces a new classification scheme
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- Relativistic ejecta from XRF 060218 and the rate of cosmic explosions
- Swift observations of GRB 070110: an extraordinary X-ray afterglow powered by the central engine
- Testing the standard fireball model of GRBs using late X-ray afterglows measured by Swift
- A Comprehensive Analysis of the Swift/XRT Data: II. Diverse Physical Origins of the Shallow Decay Segment
- Making a Short Gamma-Ray Burst from a Long one: Implications for the Nature of GRB 060614
- Evidence for chromatic X-ray light-curve breaks in Swift GRB afterglows and their theoretical implications
- The First Swift BAT Gamma-Ray Burst Catalog
- The X-ray afterglow flat segment in short GRB 051221A: Energy injection from a millisecond magnetar?
- A comprehensive analysis of Swift/XRT data: I. Apparent spectral evolution of GRB X-ray tails
- Magnetic field evolution in relativistic unmagnetized collisionless shocks
- A statistical study of gamma-ray burst afterglows measured by the Swift Ultra-violet Optical Telescope
- The First Swift Ultra-Violet/Optical Telescope GRB Afterglow Catalog
- Fermi acceleration in astrophysical jets
- Swift observations of GRB 060614: an anomalous burst with a well behaved afterglow
- Taxonomy of GRB optical light-curves: identification of a salient class of early afterglows
- Very different X-ray to optical column density ratios in gamma-ray burst afterglows: ionisation in GRB environments
- X-ray flare in XRF 050406: evidence for prolonged engine activity
- Multi-Wavelength Observations of GRB 050820A: An Exceptionally Energetic Event Followed from Start to Finish
- Smooth Light Curves from a Bumpy Ride: Relativistic Blast Wave Encounters a Density Jump
- The metallicity dependence of the long-duration GRB rate from host galaxy luminosities
- Numerical Study on GRB-Jet Formation in Collapsars
- Synchrotron emission in small scale magnetic field as possible explanation for prompt emission spectra of gamma-ray bursts
- GRB 060313: A New Paradigm for Short-Hard Bursts?
- Observational Limits on Inverse Compton Processes in GRBs
- Three-dimensional hydrodynamic simulations of asymmetric pulsar wind bow shocks
- GRB Precursors in the Fallback Collapsar Scenario
- A current driven instability in parallel, relativistic shocks
- Optical and X-Ray Observations of GRB 060526: A Complex Afterglow Consistent with An Achromatic Jet Break
- Extreme Properties Of GRB061007: A Highly Energetic OR Highly Collimated Burst?
- The Environments around Long-Duration Gamma-Ray Burst Progenitors
- Swift Discovery of Gamma-Ray Bursts without Jet Break Feature in their X-Ray Afterglows
- Global characteristics of GRBs observed with INTEGRAL and the inferred large population of low-luminosity GRBs
- Jet breaks at the end of the slow decline phase of Swift GRB lightcurves
- GRB 060607A: A GRB with Bright Asynchronous Early -ray and Optical Emissions
- Optical observations of GRB 060124 afterglow: A case for an injection break
- Radiative losses and cut-offs of energetic particles at relativistic shocks
- A unified picture for gamma-ray burst prompt and X-ray afterglow emissions
- GRB 050822: Detailed analysis of an XRF observed by Swift
- Stochastically Induced Gamma-Ray Burst Wakefield Processes
- Gamma-Ray Burst jet dynamics and their interaction with the progenitor star
- Phase speed of electrostatic waves: The critical parameter for efficient electron surfing acceleration
- Probing the Structure of Gamma-Ray Burst Jets with Steep Decay Phase of their Early X-ray Afterglows
- A Simple Test of the External Shock Model for the Prompt Emission in Gamma-Ray Bursts
- XRF 050406 late-time flattening: an inverse Compton component?
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- Properties of jet and surrounding material of GW/GRB~170817A
- Prompt gamma-ray emission of GRB 170817A associated to GW 170817: A consistent picture
- Binary Neutron Star (BNS) merger: What we learned from relativistic ejecta of GW/GRB~170817A