English

Limits on the ultra-bright Fast Radio Burst population from the CHIME Pathfinder

High Energy Astrophysical Phenomena 2018-09-26 v2

Abstract

We present results from a new incoherent-beam Fast Radio Burst (FRB) search on the Canadian Hydrogen Intensity Mapping Experiment (CHIME) Pathfinder. Its large instantaneous field of view (FoV) and relative thermal insensitivity allow us to probe the ultra-bright tail of the FRB distribution, and to test a recent claim that this distribution's slope, αlogNlogS\alpha\equiv-\frac{\partial \log N}{\partial \log S}, is quite small. A 256-input incoherent beamformer was deployed on the CHIME Pathfinder for this purpose. If the FRB distribution were described by a single power-law with α=0.7\alpha=0.7, we would expect an FRB detection every few days, making this the fastest survey on sky at present. We collected 1268 hours of data, amounting to one of the largest exposures of any FRB survey, with over 2.4\,×\times\,105^5\,deg2^2\,hrs. Having seen no bursts, we have constrained the rate of extremely bright events to < ⁣13<\!13\,sky1^{-1}\,day1^{-1} above \sim\,220(τ/ms)\sqrt{(\tau/\rm ms)} Jy\,ms for τ\tau between 1.3 and 100\,ms, at 400--800\,MHz. The non-detection also allows us to rule out α0.9\alpha\lesssim0.9 with 95%\% confidence, after marginalizing over uncertainties in the GBT rate at 700--900\,MHz, though we show that for a cosmological population and a large dynamic range in flux density, α\alpha is brightness-dependent. Since FRBs now extend to large enough distances that non-Euclidean effects are significant, there is still expected to be a dearth of faint events and relative excess of bright events. Nevertheless we have constrained the allowed number of ultra-intense FRBs. While this does not have significant implications for deeper, large-FoV surveys like full CHIME and APERTIF, it does have important consequences for other wide-field, small dish experiments.

Keywords

Cite

@article{arxiv.1702.08040,
  title  = {Limits on the ultra-bright Fast Radio Burst population from the CHIME Pathfinder},
  author = {CHIME Scientific Collaboration and Mandana Amiri and Kevin Bandura and Philippe Berger and J. Richard Bond and Jean-François Cliche and Liam Connor and Meiling Deng and Nolan Denman and Matt Dobbs and Rachel Simone Domagalski and Mateus Fandino and Adam J Gilbert and Deborah C. Good and Mark Halpern and David Hanna and Adam D. Hincks and Gary Hinshaw and Carolin Höfer and Gilbert Hsyu and Peter Klages and T. L. Landecker and Kiyoshi Masui and Juan Mena-Parra and Laura Newburgh and Niels Oppermann and Ue-Li Pen and Jeffrey B. Peterson and Tristan Pinsonneault-Marotte and Andre Renard and J. Richard Shaw and Seth R. Siegel and Kris Sigurdson and Kendrick M. Smith and Emilie Storer and Ian Tretyakov and Keith Vanderlinde and Donald V. Wiebe},
  journal= {arXiv preprint arXiv:1702.08040},
  year   = {2018}
}