High-energy emission from jet-clump interactions in microquasars
arXiv:0906.4803 · doi:10.1051/0004-6361/200811519
Abstract
High-mass microquasars are binary systems consisting of a massive star and an accreting compact object from which relativistic jets are launched. There is considerable observational evidence that winds of massive stars are clumpy. Individual clumps may interact with the jets in high-mass microquasars to produce outbursts of high-energy emission. Gamma-ray flares have been detected in some high-mass X-ray binaries, such as Cygnus X-1, and probably in LS 5039 and LS I+61 303. We predict the high-energy emission produced by the interaction between a jet and a clump of the stellar wind in a high-mass microquasar. Assuming a hydrodynamic scenario for the jet-clump interaction, we calculate the spectral energy distributions produced by the dominant non-thermal processes: relativistic bremsstrahlung, synchrotron and inverse Compton radiation, for leptons, and for hadrons, proton-proton collisions. Significant levels of emission in X-rays (synchrotron), high-energy gamma rays (inverse Compton), and very high-energy gamma rays (from the decay of neutral pions) are predicted, with luminosities in the different domains in the range ~ 10^{32}-10^{35} erg/s. The spectral energy distributions vary strongly depending on the specific conditions. Jet-clump interactions may be detectable at high and very high energies, and provide an explanation for the fast TeV variability found in some high-mass X-ray binary systems. Our model can help to infer information about the properties of jets and clumpy winds by means of high-sensitivity gamma-ray astronomy.
Accepted for publication in A&A (10 pages, 8 figures)
References in corpus (13)
- Fermi Large Area Telescope Bright Gamma-ray Source List
- Bright OB stars in the Galaxy - III. Constraints on the radial stratification of the clumping factor in hot star winds from a combined Halpha, IR and radio analysis
- Understanding the Very High-Energy Emission from Microquasars
- On the formation of TeV radiation in LS 5039
- The jet-powered optical nebula of Cygnus X-1
- Opening angles, Lorentz factors and confinement of X-ray binary jets
- Magnetic field effects on neutrino production in microquasars
- On the interaction of microquasar jets with stellar winds
- Leptonic secondary emission in a hadronic microquasar model
- Chandra Observations of the Gamma-ray Binary LSI+61303: Extended X-ray Structure?
- Exploring the connection between the stellar wind and the non-thermal emission in LS 5039
- X-Rays From Massive OB Stars: Thermal Emission From Radiative Shocks
- VHE Gamma-rays from Galactic X-ray Binary Systems
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