Inverse Compton Emission from Relativistic Jets in Binary Systems
arXiv:1808.09628 · doi:10.1093/mnras/sty2356
Abstract
The gamma-ray emission detected from several microquasars can be produced by relativistic electrons emitting through inverse Compton scattering. In particular, the GeV emission detected from Cygnus X-3, and its orbital phase dependence, strongly suggest that the emitting electrons are accelerated in a relativistic jet, and that the optical companion provides the dominant target. Here, we study the effects related to particle transport in the framework of the relativistic jet scenario. We find that even in the most compact binary systems, with parameters similar to Cygnus X-3, particle transport can have a substantial influence on the GeV lightcurve unless the jet is slow, . In more extended binary systems, strong impact of particle transport is nearly unavoidable. Thus, even for a very compact system such as Cygnus X-3, particle transport significantly affects the ability of one-zone models to infer the properties of the gamma-ray production site based on the shape on the GeV lightcurve. We conclude that a detailed study of the gamma-ray spectrum can further constrain the structure and other properties of the gamma-ray emitter in Cygnus X-3, although such a study should account for gamma-gamma attenuation, since it may strongly affect the spectrum above .
15 pages, 12 figures, MNRAS in press
References in corpus (8)
- Understanding the Very High-Energy Emission from Microquasars
- On the formation of TeV radiation in LS 5039
- Jet contributions to the broad-band spectrum of Cyg X-1 in the hard state
- A comprehensive study of high-energy gamma-ray and radio emission from Cyg X-3
- Gemini/GNIRS infrared spectroscopy of the Wolf-Rayet stellar wind in Cygnus X-3
- The AGILE monitoring of Cygnus X-3: transient gamma-ray emission and spectral constraints
- Non-thermal emission from secondary pairs in close TeV binary systems
- The 2010 May Flaring Episode of Cygnus X-3 in Radio, X-Rays, and γ-Rays
Cited by in corpus (10)
- 3D dynamics and morphology of bow-shock Pulsar Wind Nebulae
- Modelling the interaction between relativistic and non-relativistic winds in binary pulsar systems: strong magnetization of the pulsar wind
- Multi-wavelength Emission from Galactic Jets: the Case of the Microquasar SS433
- A model for high-mass microquasar jets under the influence of a strong stellar wind
- The effect of adiabatic losses on spectra of stationary jets and the origin of soft radio spectra of accreting black-hole sources
- Polarization study of gamma-ray binary
- Insights from leptohadronic modelling of the brightest blazar flare
- Physical Conditions and Particle Acceleration in the Kiloparsec Jet of Centaurus A
- Long-term study of the gamma-ray emission of Cygnus X-3 with MAGIC and Fermi-LAT
- Extreme Transients in Gamma Rays