The Transient Accereting X-Ray Pulsar XTE J1946+274: Stability of the X-Ray Properties at Low Flux and Updated Orbital Solution
arXiv:1510.05032 · doi:10.1088/0004-637X/815/1/44
Abstract
We present a timing and spectral analysis of the X-ray pulsar XTE J1946+274 observed with Suzaku during an outburst decline in 2010 October and compare with previous results. XTE J1946+274 is a transient X-ray binary consisting of a Be-type star and a neutron star with a 15.75 s pulse period in a 172 d orbit with 2-3 outbursts per orbit during phases of activity. We improve the orbital solution using data from multiple instruments. The X-ray spectrum can be described by an absorbed Fermi-Dirac cutoff power law model along with a narrow Fe K line at 6.4 keV and a weak Cyclotron Resonance Scattering Feature (CRSF) at ~35 keV. The Suzaku data are consistent with the previously observed continuum flux versus iron line flux correlation expected from fluorescence emission along the line of sight. However, the observed iron line flux is slightly higher, indicating the possibility of a higher iron abundance or the presence of non-uniform material. We argue that the source most likely has only been observed in the subcritical (non-radiation dominated) state since its pulse profile is stable over all observed luminosities and the energy of the CRSF is approximately the same at the highest (~erg s) and lowest (~erg s) observed 3-60 keV luminosities.
Accepted, 13 pages, 8 figures
References in corpus (7)
- The critical accretion luminosity for magnetized neutron stars
- Discovery of a flux-related change of the cyclotron line energy in Her X-1
- Patterns of variability in Be/X-ray pulsars during giant outbursts
- Pulse phase resolved analysis of the HMXB Cen X-3 over two binary orbits
- A 0535+26 in the August/September 2005 outburst observed by RXTE and INTEGRAL
- A Clumpy Stellar Wind and Luminosity-Dependent Cyclotron Line Revealed by The First Suzaku Observation of the High-Mass X-ray Binary 4U 1538-522
- Detection of a large Be circumstellar disk during X-ray quiescence of XTE J1946+274
Cited by in corpus (18)
- Cyclotron lines in highly magnetized neutron stars
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- The Ups & Downs of Accreting X-Ray Pulsars: Decade-long observations with the Fermi Gamma-Ray Burst Monitor
- A catalogue of high-mass X-ray binaries in the Galaxy: from the INTEGRAL to the Gaia era
- A tale of two periods: determination of the orbital ephemeris of the super-Eddington pulsar NGC 7793 P13
- Long-term optical variability of high-mass X-ray binaries. II. Spectroscopy
- Long-term pulse period evolution of the ultra-luminous X-ray pulsar NGC 7793 P13
- Correlation between the luminosity and spin-period changes during outbursts of 12 Be binary pulsars observed by the MAXI/GSC and the Fermi/GBM
- Radius of the neutron star magnetosphere during disk accretion
- Evidence for different accretion regimes in GRO J1008-57
- Diverse Long-Term Variability of Five Candidate High-Mass X-ray Binaries from Swift Burst Alert Telescope Observations
- BeppoSAX observations of XTE J1946+274
- Catalog of the Galactic population of X-ray pulsars in High-mass X-ray binary systems
- The X-ray pulsar XTE J1858+034 observed with NuSTAR and Fermi/GBM: spectral and timing characterization plus a cyclotron line
- Study of the X-ray Pulsar XTE J1946+274 with NuSTAR
- AstroSat observations of the Be/X-ray binary XTE J1946+274 during 2018 and 2021 outbursts
- Variability in high-mass X-ray binaries
- Long-term optical variability of high-mass X-ray binaries. III. Polarimetry