Secondary emission behind the radio outflows in gamma-ray binaries?
arXiv:1003.1227 · doi:10.1142/S0218271810016981
Abstract
Several binary systems consisting of a massive star and a compact object have been detected above 100 GeV in the Galaxy. In most of these sources, gamma-rays show a modulation associated to the orbital motion, which means that the emitter should not be too far from the bright primary star. This implies that gamma-ray absorption will be non negligible, and large amounts of secondary electron-positron pairs will be created in the stellar surroundings. In this work, we show that the radio emission from these pairs should be accounted for when interpreting the radio spectrum, variability, and morphology found in gamma-ray binaries. Relevant features of the secondary radio emission are the relatively hard spectrum, the orbital motion of the radio peak center, and the extended radio structure following a spiral-like trajectory. The impact of the stellar wind free-free absorption should not be neglected.
6 pages, 4 figures / presented as a contributed talk in HEPRO II, Buenos Aires, Argentina, October 26-30 2009 / accepted for publication in Int. Jour. Mod. Phys. D
References in corpus (10)
- Variable Very High Energy Gamma-ray Emission from the Microquasar LS I +61 303
- 3.9 day orbital modulation in the TeV gamma-ray flux and spectrum from the X-ray binary LS 5039
- Very High Energy Gamma-ray Radiation from the Stellar-mass Black Hole Cygnus X-1
- Understanding the Very High-Energy Emission from Microquasars
- The Orbits of the Gamma-ray Binaries LS I +61 303 and LS 5039
- HESS J0632+057 : A new gamma-ray binary?
- Periodic very high energy gamma-ray emission from LS I +61 303 observed with the MAGIC telescope
- 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
- Non-thermal emission from secondary pairs in close TeV binary systems