Thermal X-ray Emission from the Shocked Stellar Wind of Pulsar Gamma-ray Binaries
arXiv:1108.4269 · doi:10.1088/0004-637X/743/1/7
Abstract
Gamma-ray loud X-ray binaries are binary systems that show non-thermal broadband emission from radio to gamma rays. If the system comprises a massive star and a young non-accreting pulsar, their winds will collide producing broadband non-thermal emission, most likely originated in the shocked pulsar wind. Thermal X-ray emission is expected from the shocked stellar wind, but until now it has neither been detected nor studied in the context of gamma-ray binaries. We present a semi-analytic model of the thermal X-ray emission from the shocked stellar wind in pulsar gamma-ray binaries, and find that the thermal X-ray emission increases monotonically with the pulsar spin-down luminosity, reaching luminosities of the order of 10^33 erg/s. The lack of thermal features in the X-ray spectrum of gamma-ray binaries can then be used to constrain the properties of the pulsar and stellar winds. By fitting the observed X-ray spectra of gamma-ray binaries with a source model composed of an absorbed non-thermal power law and the computed thermal X-ray emission, we are able to derive upper limits on the spin-down luminosity of the putative pulsar. We applied this method to LS 5039, the only gamma-ray binary with a radial, powerful wind, and obtain an upper limit on the pulsar spin-down luminosity of ~6x10^36 erg/s. Given the energetic constraints from its high-energy gamma-ray emission, a non-thermal to spin-down luminosity ratio very close to unity may be required.
Published in ApJ. 9 pages, 6 figures
References in corpus (12)
- Gamma-ray binaries: pulsars in disguise ?
- Discovery of High-Energy Gamma-Ray Emission from the Binary System PSR B1259-63/LS 2883 Around Periastron with Fermi
- On the formation of TeV radiation in LS 5039
- TeV lightcurve of PSR B1259-63/SS2883
- A 3D dynamical model of the colliding winds in binary systems
- Confirmation of persistent radio jets in the microquasar LS 5039
- INTEGRAL and XMM-Newton observations of LSI +61 303
- The magnetic field and the location of the TeV emitter in Cygnus X-1 and LS 5039
- The changing milliarcsecond radio morphology of the gamma-ray binary LS 5039
- Exploring the connection between the stellar wind and the non-thermal emission in LS 5039
- Revealing the extended radio emission from the gamma-ray binary HESS J0632+057
- Hadronic model for radio-to-TeV gamma-ray emission from PSR B1259-63
Cited by in corpus (21)
- Gamma-ray binaries and related systems
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- Modelling the high-energy emission from gamma-ray binaries using numerical relativistic hydrodynamics
- Unraveling the high-energy emission components of gamma-ray binaries
- Colliding Stellar Winds Structure and X-ray Emission
- Periodic morphological changes in the radio structure of the gamma-ray binary LS 5039
- Direct Wind Accretion and Jet Launch in Binary Systems
- On the origin of LS 5039 and PSR J1825-1446
- Modelling the multi-wavelength emissions from PSR B1259-63/LS 2883: the effects of the stellar disc on shock radiations
- Self Regulated Shocks in Massive Star Binary Systems
- A model for the non-thermal emission of the very massive colliding-wind binary HD 93129A
- A dynamical and radiation semi-analytical model of pulsar-star colliding winds along the orbit: Application to LS 5039
- Anisotropic inverse Compton scattering of photons from the circumstellar disc in PSR B1259-63
- Clumpy stellar winds and high-energy emission in high-mass binaries hosting a young pulsar
- A changing wind collision
- Modelling the correlated keV/TeV light curves of Be/gamma-ray binaries
- An X-ray view of HD166734, a massive supergiant system
- Properties of a hypothetical cold pulsar wind in LS~5039
- Gamma-ray binaries beyond one-zone models: an application to LS 5039
- Tracing colliding winds in the UV line orbital variability of gamma-ray binaries
- Modeling the High-energy Emission from the Gamma-ray Binary 1FGL J1018.6-5856