Astrophysical parameters of LS 437 and the nature of X0726-260
arXiv:2604.12078 · doi:10.1051/0004-6361/202659001
Abstract
Be/X-ray binaries, the most common class of high-mass X-ray binaries, are characterised by OBe companions, but display a rich variety of X-ray behaviours. One of the most atypical systems is X0726-260, which also has the earliest optical counterpart among the whole Milky Way and Magellanic Cloud sample. We intend to improve the characterisation of the optical counterpart, LS 437, and to constrain the physical mechanisms responsible for the anomalous properties of X0726-260. We analyse high-quality, high-resolution optical spectroscopy of LS 437 with standard quantitative methodology to derive stellar parameters. We also make use of archival X-ray monitoring. We derive a moderate projected rotational velocity v sin i 155 km/s and a spectral type O7.5 Ve (Teff = 36 000 K), which makes LS 437 substantially earlier than any other Oe star in an X-ray binary. At this spectral type, the stellar wind likely contributes significantly to mass accretion, and the X-ray light curve is strongly suggestive of an orbitally modulated wind accretor. The source shows marked carbon depletion, whereas nitrogen is only slightly above solar abundance. LS 437 is the earliest Oe star known in the Galaxy, alongside HD 155806. Long-term X-ray lightcurves of X0726-260 strengthen the identification of a persistent 34.5 d periodicity as the orbital period, demonstrating that the X-ray emission is orbitally modulated and no X-ray outbursts have occurred over the past 30 years. Likewise, emission features in the optical spectrum indicate a remarkably stable circumstellar disk, with no sign of major structural changes over the past 40 years. All these characteristics set X0726-260 clearly apart from typical Be/X-ray binaries.
12 pages (+2), 7 figures (+1), accepted for publication in Astronomy & Astrophysics
References in corpus (26)
- Improving the open cluster census. III. Using cluster masses, radii, and dynamics to create a cleaned open cluster catalogue
- The spectroscopic Hertzsprung-Russell diagram
- The IACOB project: III. New observational clues to understand macroturbulent broadening in massive O- and B-type stars
- Giant Outbursts in Be/X-ray Binaries
- A catalogue of high-mass X-ray binaries in the Galaxy: from the INTEGRAL to the Gaia era
- Be phenomenon in open clusters: Results from a survey of emission-line stars in young open clusters
- The IACOB project. VII. The rotational properties of Galactic massive O-type stars revisited
- Swift/BAT and RXTE Observations of the Peculiar X-ray Binary 4U 2206+54 - Disappearance of the 9.6 Day Modulation
- The Tarantula Massive Binary Monitoring. IV. Double-lined photometric binaries
- A spectroscopic investigation of the O-type star population in four Cygnus OB associations. II. Determination of the fundamental parameters
- On the Spin Period Distribution in Be/X-ray Binaries
- The stellar and wind parameters of six prototypical HMXBs and their evolutionary status
- Further evidence for the presence of a neutron star in 4U 2206+54. INTEGRAL and VLA observations
- To Be or not to Be: the role of rotation in modeling Galactic Be X-ray Binaries
- A high-mass X-ray binary descended from an ultra-stripped supernova
- Astrophysical parameters and orbital solution of the peculiar X-ray transient IGR J00370+6122
- Stellar Inclination Angles from Be Star H Emission-Line Profiles
- The effects of rotation on massive star spectroscopic observables
- On the Bimodal Spin Period Distribution of Be/X-ray Pulsars
- The IACOB project XV. Updated calibrations of fundamental parameters of Galactic O-type stars
- Gaia-ESO Survey: massive stars in the Carina Nebula. II. The spectroscopic analysis of the O-star population
- The nature of the Cygnus extreme B-supergiant 2MASS J20395358+4222505
- An on-the-fly line-driven-wind iterative mass-loss estimator (LIME) for hot, massive stars of arbitrary chemical compositions
- NGC 663 as a laboratory for massive star evolution
- The role of XMM-Newton in the investigation of persistent BeXRBs
- Further evidence for natal kick segregation by spectral type in high-mass X-ray binaries