Artículo
Modeling gamma-ray emission from the high-mass X-ray binary LS 5039
Fecha de publicación:
03/2012
Editorial:
The korean Space Science Society
Revista:
Journal of Astronomy and Space Sciences
ISSN:
2093-5587
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
A few high-mass X-ray binaries-consisting of an OB star plus compact companion-have been observed by Fermi and ground-based Cerenkov telescopes like High Energy Stereoscopic System (HESS) to be sources of very high energy (VHE; up to 30 TeV) -rays. This paper focuses on the prominent -ray source, LS 5039, which consists of a massive O6.5V star in a 3.9-day-period, mildly elliptical () orbit with its companion, assumed here to be an unmagnetized compact object (e.g., black hole). Using three dimensional smoothed particle hydrodynamics simulations of the Bondi-Hoyle accretion of the O-star wind onto the companion, we find that the orbital phase variation of the accretion follows very closely the simple Bondi-Hoyle-Lyttleton (BHL) rate for the local radius and wind speed. Moreover, a simple model, wherein intrinsic emission of -rays is assumed to track this accretion rate, reproduces quite well Fermi observations of the phase variation of -rays in the energy range 0.1-10 GeV. However for the VHE (0.1-30 TeV) radiation observed by the HESS Cerenkov telescope, it is important to account also for photon-photon interactions between the -rays and the stellar optical/UV radiation, which effectively attenuates much of the strong emission near periastron. When this is included, we find that this simple BHL accretion model also quite naturally fits the HESS light curve, thus making it a strong alternative to the pulsar-wind-shock models commonly invoked to explain such VHE -ray emission in massive-star binaries.
Palabras clave:
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Articulos(IAR)
Articulos de INST.ARG.DE RADIOASTRONOMIA (I)
Articulos de INST.ARG.DE RADIOASTRONOMIA (I)
Citación
Owocki, Stan; Okazaki, Atsuo; Romero, Gustavo Esteban; Modeling gamma-ray emission from the high-mass X-ray binary LS 5039; The korean Space Science Society; Journal of Astronomy and Space Sciences; 29; 1; 3-2012; 51-55
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