Dynamic and Radiative Implications of Jet-Star Interactions in AGN Jets
arXiv:2412.07945 · doi:10.1051/0004-6361/202451914
Abstract
The interactions between jets from active galactic nuclei (AGN) and their stellar environments significantly influence jet dynamics and emission characteristics. In low-power jets, such as those in Fanaroff-Riley I (FR I) galaxies, the jet-star interactions can notably affect jet deceleration and energy dissipation. Recent numerical studies suggest that mass loading from stellar winds is a key factor in decelerating jets, accounting for many observed characteristics in FR I jets. Additionally, a radio-optical positional offset has been observed, with optical emission detected further down the jet than radio emission. This observation may challenge traditional explanations based solely on recollimation shocks and instabilities. This work utilizes the radiative transfer code RIPTIDE to generate synthetic synchrotron maps, from a population of re-accelerated electrons, in both radio and optical bands from jet simulations incorporating various mass-loading profiles and distributions of gas and stars within the ambient medium. Our findings emphasize the importance of mass entrainment in replicating the extended and diffuse radio/optical emissions observed in FR I jets and explaining the radio-optical offsets. These offsets are influenced by the galaxy's physical properties, the surrounding stellar populations, and observational biases. We successfully reproduce typical radio-optical offsets by considering a mass-load equivalent to . Overall, our results demonstrate that positive offset measurements are a promising tool for revealing the fundamental properties of galaxies and potentially their stellar populations, particularly in the context of FR I jets.
13 pages, 8 figures
References in corpus (23)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- Magnetic acceleration of ultra-relativistic jets in gamma-ray burst sources
- The Black Hole Mass, Stellar M/L, and Dark Halo in M87
- Revisiting the Fanaroff-Riley dichotomy and radio-galaxy morphology with the LOFAR Two-Metre Sky Survey (LoTSS)
- A numerical simulation of the evolution and fate of a FRI jet. The case of 3C 31
- Gamma-ray flares from red giant/jet interactions in AGN
- VLBI-Gaia offsets favor parsec-scale jet direction in Active Galactic Nuclei
- On the deceleration of FRI jets: mass loading by stellar-winds
- Radio observations of active galactic nuclei with mm-VLBI
- On significance of VLBI/Gaia position offsets
- Resolving acceleration to very high energies along the Jet of Centaurus A
- Internal entrainment and the origin of jet-related broad-band emission in Centaurus A
- The internal structure of overpressured, magnetized, relativistic jets
- AGN Jet Mass Loading and Truncation by Stellar Winds
- Linear Theory of the Rayleigh-Taylor Instability at a Discontinuous Surface of a Relativistic Flow
- A unified model for orphan and multi-wavelength blazar flares
- Triggering mixing and deceleration in FRI jets: a solution
- The impact of red giant/AGB winds on AGN jet propagation
- Direction of Parsec-Scales Jets for 9220 Active Galactic Nuclei
- Flux variability from ejectas in structured relativistic jets with large-scale magnetic fields
- Gamma rays from red giant wind bubbles entering the jets of elliptical host blazars
- Flare echos from relaxation shocks in perturbed relativistic jets
- Optical-Radio Position Offsets are Inversely Correlated with AGN Photometric Variability