On the large scale morphology of Hercules A: destabilized hot jets?
arXiv:2305.14060 · doi:10.1093/mnras/stad1640
Abstract
Extragalactic jets are generated as bipolar outflows at the nuclei of active galaxies. Depending on their morphology, they are classified as Fanaroff-Riley type I (centre-brightened) and Fanaroff-Riley type II (edge-brightened) radio jets. However, this division is not sharp and observations of these sources at large scales often show intermediate jet morphologies or even hybrid jet morphologies with a FRI type jet on one side and a FRII type jet on the other. A good example of a radio galaxy that is difficult to classify as FRI or FRII is Hercules~A. This source shows jets with bright radio lobes (a common feature of FRII type jets) albeit without the hotspots indicative of the violent interaction between the jet and the ambient medium at the impact region, because the jets seem to be disrupted inside the lobes at a distance from the bow shocks surrounding the lobes. In this paper, we explore the jet physics that could trigger this peculiar morphology by means of three-dimensional relativisitic hydrodynamical simulations. Our results show that the large-scale morphological features of Hercules A jets and lobes can be reproduced by the propagation of a relativistically hot plasma outflow that is disrupted by helical instability modes, and generates a hot lobe that expands isotropically against the pressure-decreasing intergalactic medium. We also discuss the implications that this result may have for the host active nucleus in terms of a possible transition from high-excitation to low-excitation galaxy modes.
To be published in Monthly Notices of the Royal Astronomical Society
References in corpus (20)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- Magnetic acceleration of relativistic AGN jets
- 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
- Formation of dynamical structures in relativistic jets: the FRI case
- On the deceleration of FRI jets: mass loading by stellar-winds
- Jet collimation in NGC 315 and other nearby AGN
- The role of Kelvin-Helmholtz instability in the internal structure of relativistic outflows. The case of the jet in 3C 273
- Simulating the dynamics and non-thermal emission of relativistic magnetised jets I. Dynamics
- Making Fanaroff-Riley I radio sources. Numerical Hydrodynamic 3D Simulations of Low Power Jets
- Accretion mode versus radio morphology in the LOFAR Deep Fields
- Large-scale jets from active galactic nuclei as a source of ICM heating: cavities and shocks
- A Numerical Model of Hercules A by Magnetic Tower: Jet/Lobe Transition, Wiggling, and the Magnetic Field Distribution
- Dynamics of relativistic radio jets in asymmetric environments
- Making Faranoff-Riley I radio sources II. The effects of jet magnetization
- Radio mode feedback: Does relativity matter?
- The impact of red giant/AGB winds on AGN jet propagation
- Long-term FRII jet evolution in dense environments
- Making Fanaroff-Riley I radio sources III. The effects of the magnetic field on relativistic jets' propagation and source morphologies
- 3D RMHD simulations of jet-wind interactions in High Mass X-ray Binaries