English

The origin of the Ultraluminous X-ray Sources

High Energy Astrophysical Phenomena 2017-09-06 v3

Abstract

Recently, several ultraluminous X-ray (ULX) sources were shown to host a neutron star (NS) accretor. We perform a suite of evolutionary calculations which show that, in fact, NSs are the dominant type of ULX accretor. Although black holes (BH) dominate early epochs after the star-formation burst, NSs outweigh them after a few 100 Myr and may appear as late as a few Gyr after the end of the star formation episode. If star formation is a prolonged and continuous event (i.e., not a relatively short burst), NS accretors dominate ULX population at any time in solar metallicity environment, whereas BH accretors dominate when the metallicity is sub-solar. Our results show a very clear (and testable) relation between the companion/donor evolutionary stage and the age of the system. A typical NS ULX consists of a 1.3M\sim1.3\,M_\odot NS and 1.0M\sim1.0\,M_\odot Red Giant. A typical BH ULX consist of a 8M\sim8\,M_\odot BH and 6M\sim6\,M_\odot main-sequence star. Additionally, we find that the very luminous ULXs (LX1041L_X\gtrsim10^{41} erg/s) are predominantly BH systems (9M\sim9\,M_\odot) with Hertzsprung gap donors (2M\sim2\,M_\odot). Nevertheless, some NS ULX systems may also reach extremely high X-ray luminosities (1041\gtrsim10^{41} erg/s).

Keywords

Cite

@article{arxiv.1705.06155,
  title  = {The origin of the Ultraluminous X-ray Sources},
  author = {Grzegorz Wiktorowicz and Małgorzata Sobolewska and Jean-Pierre Lasota and Krzysztof Belczynski},
  journal= {arXiv preprint arXiv:1705.06155},
  year   = {2017}
}

Comments

7 pages, 14 figures, published in ApJ