paper

An application of the Ghosh & Lamb model to the accretion powered X-ray pulsar X Persei

arXiv:1807.06252 · doi:10.1093/pasj/psy088

Abstract

The accretion-induced pulse-period changes of the Be/X-ray binary pulsar X Persei were investigated over a period of 1996 January to 2017 September. This study utilized the monitoring data acquired with the RXTE/ASM in 1.512 keV and MAXI/GSC in 220 keV. The source intensity changed by a factor of 56 over this period. The pulsar was spinning down for 19962003, and has been spinning up since 2003, as already reported. The spin up/down rate and the 312 keV flux, determined every 250 d, showed a clear negative correlation, which can be successfully explained by the accretion torque model proposed by Ghosh & Lamb (1979). When the mass, radius and distance of the neutron star are allowed to vary over a range of 1.02.4 solar masses, 9.515 km, and 0.770.85 kpc, respectively, the magnetic field strength of gave the best fits to the observation. In contrast, the observed results cannot be explained by the values of previously suggested for X Persei, as long as the mass, radius, and distance are required to take reasonable values. Assuming a distance of kpc as indicated by optical astrometry, the mass of the neutron star is estimated as solar masses.

11 pages, 9 figures, accepted for publication in PASJ