GeV - TeV gamma - ray light curves expected in the IC e ± pair cascade model for massive binaries : Application to LS 5039
نویسنده
چکیده
Context. TeV gamma-ray emission from two massive binaries of the microquasar type, LS 5039 and LS I +61o 303, show clear variability with their orbital periods. Aims. Our purpose is to calculate the GeV and TeV γ-ray light curves from the massive binary LS 5039 which are expected in the specific Inverse Compton e pair cascade model. This model successfully predicted the basic features of the high energy γ-ray emission from LS 5039 and LS I +61o 303. Methods. In the calculations we apply the Monte Carlo code which follows the IC e pair cascade in the anisotropic radiation of the massive star. Results. The γ-ray light curves and spectra are obtained for different parameters of the acceleration scenario and the inclination angles of the binary system. It is found that the GeV and TeV γ-ray light curves should be anti-correlated. This feature can be tested in the near future by the simultaneous observations of LS 5039 with the AGILE and GLAST telescopes in GeV energies and the Cherenkov telescopes in the TeV energies. Considered model also predicts a broad maximum in the TeV γ-ray light curve between the phases ∼ 0.4− 0.8 consistently with the observations of LS 5039 by the HESS telescopes. Moreover, we predict additional dip in the TeV light curve for large inclination angles ∼ 60o. This feature could serve as a diagnostic for independent measuring of the inclination angle of this binary system indicating also on the presence of a neutron star in LS 5039.
منابع مشابه
Propagation of very high energy gamma - rays inside massive binaries LS 5039 and LSI + 61 o 303
Two massive binary systems of the microquasar type, LS 5039 and LSI +61 o 303, have been suggested as possible counterparts of EGRET sources. LS 5039 has been also recently detected in TeV gamma-rays. Since the massive stars in these binary systems are very luminous, it is expected that high energy gamma-rays, if injected relatively close to the massive stars, should be strongly absorbed, initi...
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