Microquasar interaction with the surrounding medium
arXiv:0903.3293 · doi:10.1051/0004-6361/200810781
Abstract
The high kinetic energy outflowing in the jets of microquasars is delivered to the surrounding interstellar medium. This energy input can cause the formation of bow shocks and cocoons that may be detectable from radio to gamma-ray energies. Evidences or hints of emission from jet/medium interactions have been reported for some sources, but little has been done regarding the theoretical modeling of the resulting non-thermal emission. We have developed an analytical model based on those successfully applied to extragalactic sources or the interaction of AGN jets with their surroundings. Focusing on the adiabatic phase of the growing structures, we give estimations of the expected luminosities through synchrotron, relativistic Bremsstrahlung and inverse Compton processes. We conclude that the interaction structures may be detectable at radio wavelengths, while extreme values for the jet kinetic power, the source age and the medium density are required to make the emission at high and very high energies detectable.
Contribuition to the 7th. Microquasar Workshop, Foca 2008
References in corpus (7)
- A numerical simulation of the evolution and fate of a FRI jet. The case of 3C 31
- The jet-powered optical nebula of Cygnus X-1
- On the interaction of microquasar jets with stellar winds
- A structure and energy dissipation efficiency of relativistic reconfinement shocks
- Chandra Observations of the Gamma-ray Binary LSI+61303: Extended X-ray Structure?
- The large-scale jet-powered radio nebula of Circinus X-1
- The population of radio sources in the field of the unidentified gamma-ray source TeV J2032+4130
Cited by in corpus (33)
- Gamma-ray binaries and related systems
- Massive protostars as gamma-ray sources
- Large-scale flow dynamics and radiation in pulsar gamma-ray binaries
- Detection of persistent gamma-ray emission toward SS433/W50
- 3D simulations of microquasar jets in clumpy stellar winds
- 3D simulations of wind-jet interaction in massive X-ray binaries
- High-energy Cosmic Ray production in X-ray Binary Jets
- Constraints on particle acceleration in SS433/W50 from MAGIC and H.E.S.S. observations
- Mapping Jet-ISM Interactions in X-ray Binaries with ALMA: A GRS 1915105 Case Study
- Binaries with the eyes of CTA
- Multi-wavelength Emission from Galactic Jets: the Case of the Microquasar SS433
- Radio continuum and near-infrared study of the MGRO J2019+37 region
- The termination region of high-mass microquasar jets
- Continuous Jets and Backflow Models for the Formation of W50/SS433 in Magnetohydrodynamics Simulations
- Gamma-rays from SS433: evidence for periodicity
- 3D RMHD simulations of jet-wind interactions in High Mass X-ray Binaries
- On the possibilities of high-energy neutrino production in the jets of microquasar SS433 in light of new observational data
- Microquasars as heating sources of the intergalactic medium during reionisation of the Universe
- Cosmic reionization by primordial cosmic rays
- High energy gamma-ray emission from compact galactic sources in the context of observations with the next generation Cherenkov Telescope Arrays
- A model for microquasars of Population III
- Neutrino production in Population III microquasars
- The evolution of the large-scale emission in FRI jets
- Relativistic stellar jets: dynamics and non-thermal radiation
- Collisionless tangential discontinuity between pair plasma and electron-proton plasma
- Electromagnetic signatures of black hole clusters in the center of super-Eddington galaxies
- Gamma-rays from SS~433 and its interaction with the W50 nebula
- Microquasar remnants as hidden PeVatrons
- Extreme Transients in Gamma Rays
- Large-scale emission in FR I jets
- Effects of radiative losses on the relativistic jets of high-mass microquasars
- Non-Thermal Emission from Galactic Jets
- Relativistic hydrodynamical simulations of the effects of the stellar wind and the orbit on high-mass microquasar jets