Published December 3, 2015 | Version public
Journal Article

Relativistic baryonic jets from an ultraluminous supersoft X-ray source

  • 1. ROR icon National Astronomical Observatories
  • 2. ROR icon University of Chinese Academy of Sciences
  • 3. ROR icon Xiamen University
  • 4. ROR icon Purple Mountain Observatory
  • 5. ROR icon Harvard-Smithsonian Center for Astrophysics
  • 6. ROR icon Instituto de Astrofísica de Canarias
  • 7. ROR icon University of La Laguna
  • 8. ROR icon California Institute of Technology

Abstract

The formation of relativistic jets by an accreting compact object is one of the fundamental mysteries of astrophysics. Although the theory is poorly understood, observations of relativistic jets from systems known as microquasars (compact binary stars) have led to a well established phenomenology. Relativistic jets are not expected to be produced by sources with soft or supersoft X-ray spectra, although two such systems are known to produce relatively low-velocity bipolar outflows. Here we report the optical spectra of an ultraluminous supersoft X-ray source (ULS) in the nearby galaxy M81 (M81 ULS-1; refs 9, 10). Unexpectedly, the spectra show blueshifted, broad Hα emission lines, characteristic of baryonic jets with relativistic speeds. These time-variable emission lines have projected velocities of about 17 per cent of the speed of light, and seem to be similar to those from the prototype microquasar SS 433 (refs 11, 12). Such relativistic jets are not expected to be launched from white dwarfs, and an origin from a black hole or a neutron star is hard to reconcile with the persistence of M81 ULS-1's soft X-rays. Thus the unexpected presence of relativistic jets in a ULS challenges canonical theories of jet formation3, 4, but might be explained by a long-speculated, supercritically accreting black hole with optically thick outflows.

Additional Information

© 2015 Macmillan Publishers Limited. Received 17 June 2015; Accepted 11 September 2015; Published online 25 November 2015. We thank K. Blundell, R. Narayan, Z. Li, T. Wang, F. Yuan, X. Fang, J. Irwin, T. Maccarone and D. Swartz for helpful discussions. We acknowledge support from the Chinese Academy of Sciences (grant XDB09000000), from the 973 Program (grant 2014CB845705), and from the National Science Foundation of China (grants NSFC-11333004/11425313). This work is based partly on observations made with the Gran Telescopio Canarias, installed in the Spanish Observatorio del Roque de los Muchachos of the Instituto de Astrofísica de Canarias, on the island of La Palma. Some of the data were obtained at the W. M. Keck Observatory, which is operated through a scientific partnership among the California Institute of Technology, the University of California and the National Aeronautics and Space Administration. This Observatory was made possible through the financial support of the W. M. Keck Foundation. Author Contributions: J.-F.L. proposed the observations. J.-F.L., Y.B., S.W. and J.-C. G. reduced the optical and X-ray data and carried out the analysis. J.-F.L., S.J., Y.-J.L. and R.D.S. discussed the results and drafted the manuscript. A. C.-L., P.A., Y.C and S.K. helped with the observations. All authors commented on and helped in improving the manuscript.

Additional details

Additional titles

Alternative title
An ultraluminous supersoft X-ray source in M81 as a microquasar with baryonic relativistic jets

Identifiers

Eprint ID
60425
DOI
10.1038/nature15751
Resolver ID
CaltechAUTHORS:20150922-214601520

Funding

Chinese Academy of Sciences
XDB09000000
Chinese Academy of Sciences
2014CB845705
National Science Foundation of China
NSFC-11333004
National Science Foundation of China
NSFC-11425313
W. M. Keck Foundation

Dates

Created
2015-12-01
Created from EPrint's datestamp field
Updated
2021-11-10
Created from EPrint's last_modified field

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