English

Testing the Predictions of the Universal Structured GRB Jet Model

Astrophysics 2009-11-10 v2

Abstract

The two leading models for the structure of GRB jets are the uniform jet model and the universal structured jet (USJ) model. In the latter, all GRB jets are intrinsically identical and the energy per solid angle drops as the inverse square of the angle from the jet axis. The simplicity of the USJ model gives it a strong predictive power, including a specific prediction for the observed GRB distribution as a function of both the redshift zz and the viewing angle θ\theta. We show that the current sample of GRBs with known zz and estimated θ\theta does not agree with the predictions of the USJ model. This can be best seen for a relatively narrow range in zz, in which the USJ model predicts that most GRBs should be near the upper end of the observed range in θ\theta, while in the observed sample most GRBs are near the lower end of that range. Since the current sample is very inhomogeneous (i.e. involves many different detectors), it should be taken with care and cannot be used to rule out the USJ model. Nevertheless, this sample strongly disfavors the USJ model. Comparing the prediction for the observed GRB distribution both in θ\theta and in zz, with a larger and more homogeneous GRB sample, like the one expected from Swift, would either clearly rule out the USJ model, or alternatively, provide a strong support for it. The test presented here is general, and can be used to test any model that predicts both a luminosity function and a luminosity-angle relation.

Cite

@article{arxiv.astro-ph/0311545,
  title  = {Testing the Predictions of the Universal Structured GRB Jet Model},
  author = {Ehud Nakar and Jonathan Granot and Dafne Guetta},
  journal= {arXiv preprint arXiv:astro-ph/0311545},
  year   = {2009}
}

Comments

11 pages, 1 figure; accepted for publication in ApJL

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