English

Burst properties of the highly active FRB 20201124A using uGMRT

High Energy Astrophysical Phenomena 2021-11-03 v2

Abstract

We report the observations of the highly active FRb20201124A with the upgraded Giant Metrewave Radio Telescope at 550-750~MHz. These observations in the incoherent array mode simultaneously provided an arcsecond localization of bursts from \rss, the discovery of persistent radio emission associated with the host galaxy, and the detection of 48 bursts. Using the brightest burst in the sample (F=108 Jy msF= 108~{\rm Jy~ms}) we find a structure-maximizing dispersion measure of 410.8±0.5 pc cm3410.8 \pm 0.5~{\rm pc~cm}^{-3}. We find that our observations are complete down to a fluence level of 10 Jy ms10~{\rm Jy~ms}, above which the cumulative burst rate scales as a power-law R(> ⁣F)=10 hr1(F/10 Jy ms)γR(>\!F) = 10~{\rm hr}^{-1} \left(F/10\mathrm{~Jy~ms}\right)^{\gamma} with γ=1.2±0.2\gamma = -1.2 \pm 0.2. We find that the bursts are on average wider than those reported for other repeating FRBs. We find that the waiting time between bursts is well approximated by an exponential distribution with a mean of 2.9\sim 2.9 min during our observations. We searched for periodicities using both a standard Fourier domain method and the Fast Folding Algorithm, but found no significant candidates. We measure bulk spectro-temporal drift rates between 0.75-0.75 and 20 MHz ms1-20~{\rm MHz~ms}^{-1}. Finally, we use the brightest burst to set an upper limit to the scattering time of 11.1~ms at 550~MHz. The localization of FRB20201124A adds strength to the proof-of-concept method described in our earlier work and serves as a potential model for future localizations and follow-up of repeating FRBs with the uGMRT.

Keywords

Cite

@article{arxiv.2108.00697,
  title  = {Burst properties of the highly active FRB 20201124A using uGMRT},
  author = {V. R. Marthi and S. Bethapudi and R. A. Main and H. -H. Lin and L. G. Spitler and R. S. Wharton and D. Z. Li and T. G. Gautam and U. -L. Pen and G. H. Hilmarsson},
  journal= {arXiv preprint arXiv:2108.00697},
  year   = {2021}
}

Comments

11 pages, 8 figures, accepted for publication in MNRAS