Discovery of two eclipsing X-ray binaries in M51
arXiv:1804.01464 · doi:10.1093/mnras/sty872
Abstract
We discovered eclipses and dips in two luminous (and highly variable) X-ray sources in M\,51. One (CXOM51 J132943.3471135) is an ultraluminous supersoft source, with a thermal spectrum at a temperature of about 0.1 keV and characteristic blackbody radius of about km. The other (CXOM51 J132946.1471042) has a two-component spectrum with additional thermal-plasma emission; it approached an X-ray luminosity of erg s during outbursts in 2005 and 2012. From the timing of three eclipses in a series of {\it Chandra} observations, we determine the binary period ( hr) and eclipse fraction () of CXOM51 J132946.1471042. We also identify a blue optical counterpart in archival {\it Hubble Space Telescope} images, consistent with a massive donor star (mass of 20--35 ). By combining the X-ray lightcurve parameters with the optical constraints on the donor star, we show that the mass ratio in the system must be , and therefore the compact object is most likely a neutron star (exceeding its Eddington limit in outburst). The general significance of our result is that we illustrate one method (applicable to high-inclination sources) of identifying luminous neutron star X-ray binaries, in the absence of X-ray pulsations or phase-resolved optical spectroscopy. Finally, we discuss the different X-ray spectral appearance expected from super-Eddington neutron stars and black holes at high viewing angles.
23 pages, 18 figures, 5 tables. Accepted for publication in MNRAS
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