Triggering mixing and deceleration in FRI jets: a solution
arXiv:2002.05434 · doi:10.1093/mnrasl/slaa031
Abstract
Since Fanaroff & Riley (1974) reported the morphological and brightness dichotomy of radiogalaxies, and it became clear that the symmetric emission from jets and counter-jets in the centre-brightened, less powerful, FRI sources could be caused by jet deceleration, many works have addressed different mechanisms that could cause this difference. Recent observational results seem to indicate that the deceleration must be caused by the development of small-scale instabilities that force mixing at the jet boundary. According to these results, the mixing layer expands and propagates down to the jet axis along several kiloparsecs, until it covers the whole jet cross-section. Several candidate mechanisms have been proposed as the initial trigger for the generation of such mixing layer. However, the instabilities proposed so far do not fully manage to explain the observations of FRI jets and/or require a triggering mechanism. Therefore, there is not still a satisfactory explanation for the original cause of jet deceleration. In this letter, I show that the penetration (and exit) of stars from jets could give the adequate explanation by means of creating a jet-interstellar medium mixing layer that expands across the jet.
Accepted for publication in MNRAS Letters
References in corpus (20)
- Kinematics of the jet in M87 on scales of 100 -- 1000 Schwarzschild radii
- The Inner Jet of the Radio Galaxy M87
- A numerical simulation of the evolution and fate of a FRI jet. The case of 3C 31
- Formation of dynamical structures in relativistic jets: the FRI case
- On the deceleration of FRI jets: mass loading by stellar-winds
- TANAMI monitoring of Centaurus A: The complex dynamics in the inner parsec of an extragalactic jet
- Making Fanaroff-Riley I radio sources. Numerical Hydrodynamic 3D Simulations of Low Power Jets
- Internal entrainment and the origin of jet-related broad-band emission in Centaurus A
- AGN Jet Mass Loading and Truncation by Stellar Winds
- The inner jet of radio galaxy NGC 315 as observed with Chandra and the VLA
- Resonant Kelvin-Helmholtz modes in sheared relativistic flows
- Transverse stability of relativistic two-component jets
- Where Centaurus A gets its X-ray knottiness
- Linear Theory of the Rayleigh-Taylor Instability at a Discontinuous Surface of a Relativistic Flow
- Making Faranoff-Riley I radio sources II. The effects of jet magnetization
- Faranoff-Riley type I jet deceleration at density discontinuities "Relativistic hydrodynamics with realistic equation of state"
- Rotation and toroidal magnetic field effects on the stability of two-component jets
- The impact of red giant/AGB winds on AGN jet propagation
- Derivation of the physical parameters of the jet in S5 0836+710 from stability analysis
- Gamma rays from red giant wind bubbles entering the jets of elliptical host blazars