Time-Reversed Gamma-Ray Burst Light Curve Characteristics as Transitions between Subluminal and Superluminal Motion
arXiv:1908.07306 · doi:10.3847/1538-4357/ab3bdf
Abstract
We introduce a simple model to explain the time-reversed and stretched residuals in gamma-ray burst (GRB) pulse light curves. In this model an impactor wave in an expanding GRB jet accelerates from subluminal to superluminal velocities, or decelerates from superluminal to subluminal velocities. The impactor wave interacts with the surrounding medium to produce Cherenkov and/or other collisional radiation when traveling faster than the speed of light in this medium, and other mechanisms (such as thermalized Compton or synchrotron shock radiation) when traveling slower than the speed of light. These transitions create both a time-forward and a time-reversed set of light curve features through the process of Relativistic Image Doubling (RID). The model can account for a variety of unexplained yet observed GRB pulse behaviors including the amount of stretching observed in time-reversed GRB pulse residuals and the relationship between stretching factor and pulse asymmetry. The model is applicable to all GRB classes since similar pulse behaviors are observed in long/intermediate GRBs, short GRBs, and x-ray flares. The free model parameters are the impactor's Lorentz factor when moving subluminally, its Lorentz factor when moving superluminally, and the speed of light in the impacted medium.
18 pages, 7 figures, accepted for publication in The Astrophysical Journal
References in corpus (14)
- The Supernova -- Gamma-Ray Burst Connection
- Detection of a Thermal Spectral Component in the Prompt Emission of GRB 100724B
- A Comprehensive Analysis of Fermi Gamma-Ray Burst Data. I. Spectral Components and Their Possible Physical Origins of LAT/GBM GRBs
- Quasi-blackbody component and radiative efficiency of the prompt emission of gamma-ray bursts
- Very high efficiency photospheric emission in long duration gamma-ray bursts
- Angular Energy Distribution of Collapsar-Jets
- Correlations Between Lag, Luminosity, and Duration in Gamma-ray Burst Pulses
- Collimated Jet or Expanding Outflow: Possible Origins of GRBs and X-Ray Flashes
- Properties of Short Gamma-Ray Burst Pulses from A BATSE TTE GRB Pulse Catalog
- Photospheric Emission From Variable Engine Gamma Ray Burst Simulations
- A comprehensive analysis of Fermi Gamma-Ray Burst Data: IV. Spectral lag and Its Relation to Ep Evolution
- A Monte Carlo Radiation Transfer Study of Photospheric Emission in Gamma Ray Bursts
- Variabilities of Gamma-ray Bursts from Black Hole Hyper-accretion Disks
- Smoke and Mirrors: Signal-to-Noise and Time-Reversed Structures in Gamma-Ray Burst Pulse Light Curves
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- Temporal Properties of Precursors, Main peaks and Extended Emissions of Short GRBs in the Third Swift/BAT GRB Catalog
- How Temporal Symmetry Defines Morphology in BATSE Gamma-Ray Burst Pulse Light Curves
- Toward the Detection of Relativistic Image Doubling in Imaging Atmospheric Cerenkov Telescopes
- Toward the Detection of Relativistic Image Doubling in Water Cherenkov Detectors