SIMBAD references

2019A&A...625L..12M - Astronomy and Astrophysics, volume 625, L12-12 (2019/5-1)

Updated orbital ephemeris of the ADC source X 1822-371: a stable orbital expansion over 40 years.

MAZZOLA S.M., IARIA R., DI SALVO T., GAMBINO A.F., MARINO A., BURDERI L., SANNA A., RIGGIO A. and TAILO M.

Abstract (from CDS):


Aims. Source X 1822-371 is an eclipsing compact binary system with a period close to 5.57 h and an orbital period derivative dPorb/dt of 1.51(7)x10–10s/s. The very high value of dPorb/dt is compatible with a super-Eddington mass transfer rate from the companion star, as suggested by X-ray and optical data. The XMM-Newton observation taken in 2017 allows us to update the orbital ephemeris and verify whether the orbital period derivative has been stable over the past 40yr.
Methods. We added two new values obtained from the Rossi-XTE (RXTE) and XMM-Newton observations performed in 2011 and 2017, respectively, to the X-ray eclipse arrival times from 1977 to 2008. We estimated the number of orbital cycles and the delays of our eclipse arrival times spanning 40yr, using as reference time the eclipse arrival time obtained from the RXTE observation taken in 1996.
Results. Fitting the delays with a quadratic model, we found an orbital period Porb=5.57062957(20)h and a dPorb/dt value of 1.475(54)x10–10s/s. The addition of a cubic term to the model does not significantly improve the fit quality. We also determined a spin-period value of Pspin=0.5915669(4) s and its first derivative dPspin/dt=-2.595(11)x10–12s/s.
Conclusions. Our results confirm the scenario of a super-Eddington mass transfer rate; we also exclude a gravitational coupling between the orbit and the change in the oblateness of the companion star triggered by the nuclear luminosity of the companion star.

Abstract Copyright: © ESO 2019

Journal keyword(s): stars: neutron - stars: individual: X 1822-371 - X-rays: binaries - eclipses - ephemerides

Simbad objects: 1

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