English

Multiband counterparts of two eclipsing ultraluminous X-ray sources in M 51

High Energy Astrophysical Phenomena 2018-01-24 v1

Abstract

We present the discovery and interpretation of ionized nebulae around two ultraluminous X-ray sources in M 51; both sources share the rare property of showing X-ray eclipses by their companion stars, and are therefore prime targets for follow-up studies. Using archival Hubble Space Telescope images, we found an elongated, 100-pc-long emission-line structure associated with one X-ray source (CXOM51 J132940.0+471237; ULX-1 for simplicity), and a more circular, ionized nebula at the location of the second source (CXOM51 J132939.5+471244; ULX-2 for simplicity). We observed both nebulae with the Large Binocular Telescope's Multi-Object Double Spectrograph. From our analysis of the optical spectra, we argue that the gas in the ULX-1 bubble is shock-ionized, consistent with the effect of a jet with a kinetic power of \approx2 ×1039\times 10^{39} erg s1^{-1}. Additional X-ray photo-ionization may also be present, to explain the strength of high-ionization lines such as He II λ4686\lambda 4686 and [Ne V] λ3426\lambda 3426. On the other hand, the emission lines from the ULX-2 bubble are typical for photoionization by normal O stars suggesting that the nebula is actually an H II region not physically related to the ULX but is simply a chance alignment. From archival Very Large Array data, we also detect spatially extended, steep-spectrum radio emission at the location of the ULX-1 bubble (consistent with its jet origin), but no radio counterpart for ULX-2 (consistent with the lack of shock-ionized gas around that source).

Keywords

Cite

@article{arxiv.1801.01889,
  title  = {Multiband counterparts of two eclipsing ultraluminous X-ray sources in M 51},
  author = {R. Urquhart and R. Soria and H. M. Johnston and M. W. Pakull and C. Motch and A. Schwope and J. C. A. Miller-Jones and G. E. Anderson},
  journal= {arXiv preprint arXiv:1801.01889},
  year   = {2018}
}

Comments

18 pages, 10 figures, 2 tables. Accepted for publication in MNRAS