Staring at 4U 1909+07 with Suzaku
arXiv:1209.4119 · doi:10.1051/0004-6361/201219845
Abstract
We present an analysis of the neutron star High Mass X-ray Binary (HMXB) 4U 1909+07 mainly based on Suzaku data. We extend the pulse period evolution, which behaves in a random-walk like manner, indicative of direct wind accretion. Studying the spectral properties of 4U 1909+07 between 0.5 to 90 keV we find that a power-law with an exponential cutoff can describe the data well, when additionally allowing for a blackbody or a partially covering absorber at low energies. We find no evidence for a cyclotron resonant scattering feature (CRSF), a feature seen in many other neutron star HMXBs sources. By performing pulse phase resolved spectroscopy we investigate the origin of the strong energy dependence of the pulse profile, which evolves from a broad two-peak profile at low energies to a profile with a single, narrow peak at energies above 20 keV. Our data show that it is very likely that a higher folding energy in the high energy peak is responsible for this behavior. This in turn leads to the assumption that we observe the two magnetic poles and their respective accretion columns at different phases, and that these accretions column have slightly different physical conditions.
6 pages, 5 figures, accepted for publication in A&A
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Cited by in corpus (10)
- Cyclotron lines in highly magnetized neutron stars
- An INTEGRAL overview of High Mass X-ray Binaries: classes or transitions?
- Revisiting the spectral and timing properties of 4U 1909+07 with NuSTAR and Astrosat
- NuSTAR detection of hard X-ray phase lags from the accreting pulsar GS 0834-430
- XMM-Newton spectroscopy of the accreting magnetar candidate 4U0114+65
- XMM-Newton and Swift observations of supergiant high mass X-ray binaries
- Possible detection of a cyclotron resonance scattering feature in the X-ray pulsar 4U 1909+07
- Investigating the superorbital modulations in 4U 1909+07, IGR J16418-4532 and IGR J16479-4514 with Swift XRT, BAT and NuSTAR observations
- Swift/XRT monitoring of the orbital and superorbital modulations in 4U 1909+07
- Probing the polarized emission from the accretion-powered pulsar 4U 1907+09 with IXPE