Orbital X-Ray Variability of the Microquasar LS 5039
arXiv:astro-ph/0507412 · doi:10.1086/429901
Abstract
The properties of the orbit and the donor star in the high mass X-ray binary microquasar LS 5039 indicate that accretion processes should mainly occur via a radiatively driven wind. In such a scenario, significant X-ray variability would be expected due to the eccentricity of the orbit. The source has been observed at X-rays by several missions, although with a poor coverage that prevents to reach any conclusion about orbital variability. Therefore, we conducted RossiXTE observations of the microquasar system LS 5039 covering a full orbital period of 4 days. Individual observations are well fitted with an absorbed power-law plus a Gaussian at 6.7 keV, to account for iron line emission that is probably a diffuse background feature. In addition, we have taken into account that the continuum is also affected by significant diffuse background contamination. Our results show moderate power-law flux variations on timescales of days, as well as the presence of miniflares on shorter timescales. The new orbital ephemeris of the system recently obtained by Casares et al. have allowed us to show, for the first time, that an increase of emission is seen close to the periastron passage, as expected in an accretion scenario. Moreover, the detected orbital variability is a factor of ~4 smaller than the one expected by using a simple wind accretion model, and we suggest that an accretion disk around the compact object could be responsible for this discrepancy. On the other hand, significant changes in the photon index are also observed clearly anti-correlated with the flux variations. We interpret the overall X-ray spectral characteristics of LS 5039 in the context of X-ray radiation produced by inverse Compton and/or synchrotron processes in the jet of this microquasar.
published in Astrophysical Journal, submission format (real number of pages: 7, 4 figures)
References in corpus (1)
Cited by in corpus (22)
- Gamma-ray binaries: pulsars in disguise ?
- Understanding the Very High-Energy Emission from Microquasars
- The changing milliarcsecond radio morphology of the gamma-ray binary LS 5039
- Chandra Observations of the Gamma-ray Binary LSI+61303: Extended X-ray Structure?
- Exploring the connection between the stellar wind and the non-thermal emission in LS 5039
- Pulsar wind zone processes in LS 5039
- Pulsar model of the high energy phenomenology of LS 5039
- INTEGRAL observation of hard X-ray variability of the TeV binary LS5039 / RX J1826.2-1450
- Swift/XRT monitoring of five orbital cycles of LSI +61 303
- Simulations of an inhomogeneous stellar wind interacting with a pulsar wind in a binary system
- TeV source HESS J1804-216 in X-rays and other wavelengths
- Theoretical overview on high-energy emission in microquasars
- Modeling the effects of clumpy winds in the high-energy light curves of γ-ray binaries
- Low frequency radio spectrum and spectral turnover of LS 5039
- INTEGRAL serendipitous detection of the gamma-ray microquasar LS 5039
- Properties of a hypothetical cold pulsar wind in LS~5039
- Investigation of the broadband emission of the gamma-ray binary HESS J0632+057 using an intrabinary shock model
- Achromatic rapid flares in hard X-rays in the -ray binary LS I +61-303
- Unveiling properties of the non-thermal X-ray production in the gamma-ray binary LS 5039 using the long-term pattern of its fast X-ray variability
- Explaining the extended GeV gamma-ray emission adjacent to HESS J1825-137
- Novel application to estimate the mass-loss and the dust-formation rates in O-type gamma-ray binaries using near-infrared photometry
- H.E.S.S. Observations of LS 5039