Observations of GRO J1744-28 in quiescence with XMM-Newton
arXiv:2009.13171 · doi:10.1051/0004-6361/202038093
Abstract
We report on the deep observations of the "bursting pulsar" GRO J1744-28, which were performed with XMM-Newton and aimed to clarify the origin of its X-ray emission in quiescence. We detect the source at a luminosity level of erg s with an X-ray spectrum that is consistent with the power law, blackbody, or accretion-heated neutron star atmosphere models. The improved X-ray localization of the source allowed us to confirm the previously identified candidate optical counterpart as a relatively massive G/K~III star at 8 kpc close to the Galactic center, implying an almost face-on view of the binary system. Although we could only find a nonrestricting upper limit on the pulsed fraction of %, the observed hard X-ray spectrum and strong long-term variability of the X-ray flux suggest that the source is also still accreting when not in outburst. The luminosity corresponding to the onset of centrifugal inhibition of accretion is thus estimated to be at least two orders of magnitude lower than previously reported. We discuss this finding in the context of previous studies and argue that the results indicate a multipole structure in the magnetic field with the first dipole term of G, which is much lower than previously assumed.
9 pages, 8 figures, accepted in A&A
References in corpus (10)
- The XMM-Newton Serendipitous Survey. V. The Second XMM-Newton Serendipitous Source Catalogue
- The critical accretion luminosity for magnetized neutron stars
- The hard X-ray emission of X Per
- The direct cooling tail method for X-ray burst analysis to constrain neutron star masses and radii
- Cyclotron emission, absorption, and the two faces of X-ray pulsar A 0535+262
- High-Resolution X-Ray Spectroscopy of the Bursting Pulsar GRO J1744-28
- GRO J1744-28: an intermediate B-field pulsar in a low mass X-ray binary
- Simultaneous NuSTAR/Chandra observations of the Bursting Pulsar GRO J1744-28 during its third reactivation
- Evidence for the radiation-pressure dominated accretion disk in bursting pulsar GRO J1744-28 using timing analysis
- Searching for coherent pulsations in ultraluminous X-ray sources