Gamma-Ray Burst Spectra and Light Curves as Signatures of a Relativistically Expanding Plasma
arXiv:astro-ph/0206204 · doi:10.1086/342271
Abstract
Several patterns have been discovered in how some spectral characteristics change during the decaying phase of long (> few s.) GRB pulses. We compare these observed signatures with those expected from a relativistically expanding shell. Within the internal shock model and assuming a short cooling time, we show that the angular dependence in arrival time can explain the general characteristics of long GRB pulses. This includes the pulse shape, with a fast rise and a slower decay, ~ (1+t/tau)^2, and the spectral evolution, which can be described by the hardness-intensity correlation (HIC), with the intensity being proportional to the square of the hardness. A variation of the relevant time scales involved (the angular spreading and the dynamic) can explain the broad, observed dispersion of the HIC index. Reasonable estimates of physical parameters lead to situations where the HIC relation deviates from a pure power law; features that are indeed present in the observations. Depending on the relative values of the rise and decay times of the intrinsic light curve, the spectral/temporal behavior, as seen by an observer, will produce hard-to-soft or tracking pulses. The observed spectrum is a superposition of many intrinsic spectra arriving from different parts of the shell with varying spectral shifts. Therefore, it will be broader than the emitted spectrum and its spectral parameters could have complex relations with the intrinsic ones. Furthermore, we show that the softening of the low-energy power-law index, that has been observed in some pulses, can be explained by geometric effects and does not need to be an intrinsic behavior.
To appear in ApJ, better resolution figures at http://www.astro.su.se/~felix/research.html
Cited by in corpus (52)
- Gamma-Ray Bursts
- The Cooling Behavior of Thermal Pulses in Gamma-Ray Bursts
- Testing the Curvature Effect and Internal Origin of Gamma-Ray Burst Prompt Emissions and X-ray Flares with Swift Data
- Temporal Evolution Of Thermal Emission From Relativistically Expanding Plasma
- Search for Relativistic Curvature Effects in Gamma-Ray Burst Pulses
- Curvature Effects in Gamma Ray Burst Colliding Shells
- Spectral-Luminosity relation within individual Fermi GRBs
- Swift and XMM-Newton Observations of the Extraordinary GRB 060729: An afterglow with a more than 100 days X-ray light curve
- A new definition of the intermediate group of gamma-ray bursts
- X-ray Hardness Evolution in GRB Afterglows and Flares: Late Time GRB Activity Without N_H Variations
- Peak energy of the prompt emission of long Gamma Ray Bursts vs their fluence and peak flux
- Luminosity--time and luminosity--luminosity correlations for GRB prompt and afterglow plateau emissions
- The Energy-Dependence of GRB Minimum Variability Timescales
- Low-Luminosity GRB 060218: A Collapsar Jet from a Neutron Star, Leaving a Magnetar as a Remnant?
- Spectral lags and the energy dependence of pulse width in gamma-ray bursts: contributions from the relativistic curvature effect
- The theory of spectral evolution of the GRB prompt emission
- The peak luminosity - peak energy correlation in GRBs
- On the Spectral Lags of the Short Gamma-Ray Bursts
- Characteristics of profiles of gamma-ray burst pulses associated with the Doppler effect of fireballs
- Light curves and spectra from off-axis gamma-ray bursts
- Gamma Ray Burst Prompt correlations
- The Connection Between Spectral Evolution and GRB Lag
- Toward an understanding of GRB prompt emission mechanism: II. Patterns of peak energy evolution and their connection to spectral lags
- Modeling Fluctuations in the GRB-Afterglow Light Curves
- Interpretations of gamma-ray burst spectroscopy. I. Analytical and numerical study of spectral lags
- X-ray and TeV emissions from High Frequency Peaked BL Lacs
- Time-resolved spectral correlations of long-duration Gamma-Ray Bursts
- Black hole accretion disc impacts
- Relationship between the gamma-ray burst pulse width and energy due to the Doppler effect of fireballs
- A test of the power law relationship between gamma-ray burst pulse width ratio and energy expected in fireballs or uniform jets
- Deviation of light curves of gamma-ray burst pulses from standard forms due to the curvature effect of spherical fireballs or uniform jets
- Swift multi-wavelength observations of the bright flaring burst GRB051117A
- Redshift distribution of gamma-ray bursts and star formation rate
- The full curvature effect expected in early X-ray afterglow emission of gamma-ray bursts
- Modeling Spectral Variability of Prompt GRB Emission within the Jitter Radiation Paradigm
- Spectral lag of gamma-ray burst caused by the intrinsic spectral evolution and the curvature effect
- The softening phenomenon due to the curvature effect: in the case of extremely short intrinsic emission
- Hardness ratio evolutionary curves of gamma-ray bursts expected by the curvature effect
- The FWHM of local pulses and the corresponding power-law index of gamma-ray burst FRED pulses
- Inferring the emission regions for different kinds of gamma-ray bursts
- Physical implication of the Kocevski Ryde Liang pulse function of gamma ray bursts
- Dependence of Temporal Properties on Energy in Long-Lag, Wide-Pulse Gamma-Ray Bursts
- Spectral evolution of long Gamma Ray Burst prompt emission: electrostatic acceleration and adiabatic expansion
- Gamma-Ray Burst in a Binary System
- Statistical properties of Fermi GBM GRBs' spectra
- New results on the gamma-ray burst variability-luminosity relation
- GRB 090618: different pulse temporal and spectral characteristics within a burst
- Relationship between the rise width and the full width of gamma-ray burst pulses and its implications in terms of the fireball model
- The Fermi GBM GRBs' multivariate statistics
- Two types of softening detected in X-ray afterglows of Swift bursts: internal and external shock origins?
- Development of the spectrum of gamma-ray burst pulses influenced by the intrinsic spectral evolution and the curvature effect
- High energy time lags of Gamma Ray Bursts