English

An extremely powerful long-lived superluminal ejection from the black hole MAXI J1820+070

High Energy Astrophysical Phenomena 2020-03-03 v1

Abstract

Black holes in binary systems execute patterns of outburst activity where two characteristic X-ray states are associated with different behaviours observed at radio wavelengths. The hard state is associated with radio emission indicative of a continuously replenished, collimated, relativistic jet, whereas the soft state is rarely associated with radio emission, and never continuously, implying the absence of a quasi-steady jet. Here we report radio observations of the black hole transient MAXI J1820++070 during its 2018 outburst. As the black hole transitioned from the hard to soft state we observed an isolated radio flare, which, using high angular resolution radio observations, we connect with the launch of bi-polar relativistic ejecta. This flare occurs as the radio emission of the core jet is suppressed by a factor of over 800. We monitor the evolution of the ejecta over 200 days and to a maximum separation of 10'', during which period it remains detectable due to in-situ particle acceleration. Using simultaneous radio observations sensitive to different angular scales we calculate an accurate estimate of energy content of the approaching ejection. This energy estimate is far larger than that derived from state transition radio flare, suggesting a systematic underestimate of jet energetics.

Keywords

Cite

@article{arxiv.2003.01083,
  title  = {An extremely powerful long-lived superluminal ejection from the black hole MAXI J1820+070},
  author = {J. S. Bright and R. P. Fender and S. E. Motta and D. R. A. Williams and J. Moldon and R. M. Plotkin and J. C. A. Miller-Jones and I. Heywood and E. Tremou and R. Beswick and G. R. Sivakoff and S. Corbel and D. A. H. Buckley and J. Homan and E. Gallo and A. J. Tetarenko and T. D. Russell and D. A. Green and D. Titterington and P. A. Woudt and R. P. Armstrong and P. J. Groot and A. Horesh and A. J. van der Horst and E. G. Körding and V. A. McBride and A. Rowlinson and R. A. M. J. Wijers},
  journal= {arXiv preprint arXiv:2003.01083},
  year   = {2020}
}

Comments

57 pages, 8 figures, published in Nature Astronomy