4.7 Article

Photon-photon absorption of very high energy gamma rays from microquasars:: Application to LS 5039

Journal

ASTROPHYSICAL JOURNAL
Volume 634, Issue 1, Pages L81-L84

Publisher

UNIV CHICAGO PRESS
DOI: 10.1086/498615

Keywords

gamma rays : theory; radiation mechanisms : nonthermal; stars : winds, outflows; X-rays : binaries

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Very high energy ( VHE) gamma-rays have recently been detected from the Galactic black hole candidate and microquasar LS 5039. A plausible site for the production of these VHE gamma-rays is the region close to the base of the mildly relativistic outflow. However, at distances comparable to the binary separation, the intense photon field of the stellar companion leads to substantial gamma gamma absorption of VHE gamma-rays. If the system is viewed at a substantial inclination (i not equal 0), this absorption feature will be modulated on the orbital period of the binary as a result of a phase-dependent stellar-radiation intensity and pair-production threshold. We apply our results to LS 5039 and find that ( 1) gamma gamma absorption effects will be substantial if the photon production site is located at a distance from the central compact object of the order of the binary separation (approximate to 2.5 x 10(12) cm) or less; ( 2) the gamma gamma absorption depth will be largest at a few hundred GeV, leading to a characteristic absorption trough; ( 3) the gamma gamma absorption feature will be strongly modulated on the orbital period, characterized by a spectral hardening accompanying periodic dips of the VHE gamma-ray flux; and ( 4) gamma-rays can escape virtually unabsorbed, even from within approximate to 10(12) cm, when the star is located behind the production site as seen by the observer.

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