English

FRB microstructure revealed by the real-time detection of FRB170827

High Energy Astrophysical Phenomena 2018-05-02 v2

Abstract

We report a new Fast Radio Burst (FRB) discovered in real-time as part of the UTMOST project at the Molonglo Observatory Synthesis Radio Telescope (MOST). FRB170827 is the first detected with our low-latency (<24< 24 s), machine-learning-based FRB detection system. The FRB discovery was accompanied by the capture of voltage data at the native time and frequency resolution of the observing system, enabling coherent dedispersion and detailed off-line analysis, which have unveiled fine temporal and frequency structure. The dispersion measure (DM) of 176.80 ±\pm 0.04 pc cm3^{-3}, is the lowest of the FRB population. The Milky Way contribution along the line of sight is \sim 40 pc cm3^{-3}, leaving an excess DM of \sim 145 pc cm3^{-3}. The FRB has a fluence >> 20 ±\pm 7 Jy ms, and is narrow, with a width of \sim 400 μ\mus at 10%\% of its maximum amplitude. However, the burst shows three temporal components, the narrowest of which is \sim 30 μ\mus, and a scattering timescale of 4.1±2.74.1 \pm 2.7 μ\mus. The FRB shows spectral modulations on frequency scales of 1.5 MHz and 0.1 MHz. Both are prominent in the dynamic spectrum, which shows a very bright region of emission between 841 and 843 MHz, and weaker, patchy emission across the entire band. We show the fine spectral structure could arise in the FRB host galaxy, or its immediate vicinity.

Keywords

Cite

@article{arxiv.1803.05697,
  title  = {FRB microstructure revealed by the real-time detection of FRB170827},
  author = {W. Farah and C. Flynn and M. Bailes and A. Jameson and K. W. Bannister and E. D. Barr and T. Bateman and S. Bhandari and M. Caleb and D. Campbell-Wilson and S. -W. Chang and A. Deller and A. J. Green and R. Hunstead and F. Jankowski and E. Keane and J. -P. Macquart and A. Möller and C. A. Onken and S. Osłowski and A. Parthasarathy and K. Plant and V. Ravi and R. M. Shannon and B. E. Tucker and V. Venkatraman Krishnan and C. Wolf},
  journal= {arXiv preprint arXiv:1803.05697},
  year   = {2018}
}

Comments

10 pages, 6 figures, accepted for publication in MNRAS