arXiv · 1012.0915
Radiation from matter entrainment in astrophysical jets: the AGN case
Abstract
Jets are found in a variety of astrophysical sources, from young stellar objects to active galactic nuclei. In all the cases the jet propagates with a supersonic velocity through the external medium, which can be inhomogeneous, and inhomogeneities could penetrate into the jet. The interaction of the jet material with an obstacle produces a bow shock in the jet in which particles can be accelerated up to relativistic energies and emit high-energy photons. In this work, we explore the active galactic nuclei scenario, focusing on the dynamical and radiative consequences of the interaction at different jet heights. We find that the produced high-energy emission could be detectable by the current gamma-ray telescopes. In general, the jet-clump interactions are a possible mechanism to produce (steady or flaring) high-energy emission in many astrophysical sources in which jets are present.
Explore related subjects
Keep this discovery
Anabella T. Araudo, Valenti Bosch-Ramon, Gustavo E. Romero. 2010-12-04. Radiation from matter entrainment in astrophysical jets: the AGN case. https://doi.org/10.1017/s1743921310015802
Cite the original work for its findings. Save a collection to share your selection of sources.