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The Repeating Fast Radio Burst FRB 121102 as Seen on Milliarcsecond Angular Scales

The Astrophysical Journal Letters · 2017 · Vol. 834(2) · pp. L8–L8
B. MarcoteZ. ParagiJ. W. T. HesselsA. KeimpemaHuib Jan van LangeveldeYuping HuangC. BassaSlavko BogdanovGeoffrey C. BowerSarah Burke-SpolaorBryan ButlerR. M. CampbellShami ChatterjeeJ. M. CordesPaul DemorestM. A. GarrettT. GhoshV. M. KaspiCasey LawT. Joseph W. LazioM. A. McLaughlinS. M. RansomC. J. SalterPaul ScholzAndrew SeymourAndrew SiemionL. G. SpitlerShriharsh P. TendulkarRobert Wharton

Abstract

Abstract The millisecond-duration radio flashes known as fast radio bursts (FRBs) represent an enigmatic astrophysical phenomenon. Recently, the sub-arcsecond localization (∼100 mas precision) of FRB 121102 using the Very Large Array has led to its unambiguous association with persistent radio and optical counterparts, and to the identification of its host galaxy. However, an even more precise localization is needed in order to probe the direct physical relationship between the millisecond bursts themselves and the associated persistent emission. Here, we report very-long-baseline radio interferometric observations using the European VLBI Network and the 305 m Arecibo telescope, which simultaneously detect both the bursts and the persistent radio emission at milliarcsecond angular scales and show that they are co-located to within a projected linear separation of ≲40 pc (≲12 mas angular separation, at 95% confidence). We detect consistent angular broadening of the bursts and persistent radio source (∼2–4 mas at 1.7 GHz), which are both similar to the expected Milky Way scattering contribution. The persistent radio source has a projected size constrained to be ≲ 0.7 pc (≲0.2 mas angular extent at 5.0 GHz) and a lower limit for the brightness temperature of <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" overflow="scroll"> <mml:msub> <mml:mrow> <mml:mi>T</mml:mi> </mml:mrow> <mml:mrow> <mml:mi>b</mml:mi> </mml:mrow> </mml:msub> <mml:mo>≳</mml:mo> <mml:mn>5</mml:mn> <mml:mo>×</mml:mo> <mml:msup> <mml:mrow> <mml:mn>10</mml:mn> </mml:mrow> <mml:mrow> <mml:mn>7</mml:mn> </mml:mrow> </mml:msup> <mml:mspace width="0.33em"/> <mml:mi mathvariant="normal">K</mml:mi> </mml:math> . Together, these observations provide strong evidence for a direct physical link between FRB 121102 and the compact persistent radio source. We argue that a burst source associated with a low-luminosity active galactic nucleus or a young neutron star energizing a supernova remnant are the two scenarios for FRB 121102 that best match the observed data.

Funding

  • National Science Foundation
  • National Aeronautics and Space Administration
  • California Institute of Technology
  • Canadian Institute for Advanced Research
  • McGill University
  • National Radio Astronomy Observatory
  • Universities Space Research Association
  • European Commission
  • Fonds Québécois de la Recherche sur la Nature et les Technologies
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Ministerio de Economía y Competitividad
  • Max-Planck-Gesellschaft
  • Jet Propulsion Laboratory
  • Smithsonian Astrophysical Observatory
  • Natural Sciences and Engineering Research Council of Canada
  • Institut de Ciències del Cosmos
  • Precursory Research for Embryonic Science and Technology
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Cited by
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References
Astropy: A community Python package for astronomy
Astronomy and Astrophysics · 2013 · 13,763 citations
The Host Galaxy and Redshift of the Repeating Fast Radio Burst FRB 121102
The Astrophysical Journal Letters · 2017 · 688 citations
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