Active galactic nuclei jets simulated with smoothed particle hydrodynamics
arXiv:2205.08884 · doi:10.1093/mnras/stad450
Abstract
Simulations of active galactic nuclei (AGN) jets have thus far been performed almost exclusively using grid-based codes. We present the first results from hydrodynamical tests of AGN jets, and their interaction with the intracluster medium (ICM), using smoothed particle hydrodynamics (SPH) as implemented in the SWIFT code. We launch these jets into a constant-density ICM, as well as ones with a power-law density profile. We also vary the jet power, velocity, opening angle and numerical resolution. In all cases we find broad agreement between our jets and theoretical predictions for the lengths of the jets and the lobes they inflate, as well as the radii of the lobes. The jets first evolve ballistically, and then transition to a self-similar phase, during which the lobes expand in a self-similar fashion (keeping a constant shape). In this phase the kinetic and thermal energies in the lobes and in the shocked ICM are constant fractions of the total injected energy. In our standard simulation, two thirds of the initially injected energy is transferred to the ICM by the time the jets are turned off, mainly through a bow shock. Of that, is in kinetic form, indicating that the bow shock does not fully and efficiently thermalise while the jet is active. At resolutions typical of large cosmological simulations ( ), the shape of the lobes is close to self-similar predictions to an accuracy of . This indicates that the basic physics of jet-inflated lobes can be correctly simulated even at such resolutions ( particles per jet).
Accepted for publication in MNRAS
References in corpus (39)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Heating Hot Atmospheres with Active Galactic Nuclei
- Properties of galaxies reproduced by a hydrodynamic simulation
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Moving mesh cosmology: tracing cosmological gas accretion
- Detection of large-scale X-ray bubbles in the Milky Way halo
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- Bent by baryons: the low mass galaxy-halo relation
- The impact of mechanical AGN feedback on the formation of massive early-type galaxies
- Luminosity function, sizes and FR dichotomy of radio-loud AGN
- Feedback from Active Galactic Nuclei in Galaxy Groups
- Numerical modelling of the lobes of radio galaxies in cluster environments II: Magnetic field configuration and observability
- Formation of dynamical structures in relativistic jets: the FRI case
- Hot Atmospheres, Cold Gas, AGN Feedback and the Evolution of Early Type Galaxies: a Topical Perspective
- Physical Properties of Very Powerful FRII Radio Galaxies
- Radio jets from AGN in dwarf galaxies in the COSMOS survey: mechanical feedback out to redshift 3.4
- Sphenix: Smoothed Particle Hydrodynamics for the next generation of galaxy formation simulations
- OVI Observations of Galaxy Clusters: Evidence for Modest Cooling Flows
- Trapping of magnetic flux by the plunge region of a black hole accretion disk
- Kinematics of the M87 jet in the collimation zone: gradual acceleration and velocity stratification
- 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
- Spectral ageing analysis of the double-double radio galaxy J1453+3308
- The disc-like host galaxies of radio-loud Narrow-Line Seyfert 1s
- Shock heating by FR I radio sources in galaxy clusters
- Spin-driven jet feedback in idealised simulations of galaxy groups and clusters
- A method of estimation of the dynamical age of FR II-type radio sources from multifrequency data
- Delayed triggering of radio Active Galactic Nuclei in gas-rich minor mergers in the local Universe
- Jet Speeds in Wide Angle Tailed Radio Galaxies
- Jet-driven AGN feedback on molecular gas and low star-formation efficiency in a massive local spiral galaxy with bright X-ray halo
- Propagation, cocoon formation, and resultant destabilization of relativistic jets
- Brightest Cluster Galaxies in Cosmological Simulations with Adaptive Mesh Refinement: Successes and Failures
- Investigating the spectral age problem with powerful radio galaxies
- Shocks in relativistic transverse stratified jets, a new paradigm for radio-loud AGN
- Long-term FRII jet evolution in dense environments
- Projecting SPH Particles in Adaptive Environments
- Investigating the spectra and physical nature of galaxy scale jets
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- SWIFT: A modern highly-parallel gravity and smoothed particle hydrodynamics solver for astrophysical and cosmological applications
- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- pAGN: the one-stop solution for AGN disc modeling
- Active galactic nucleus jet feedback in hydrostatic halos
- In the grip of the disk: dragging the companion through an AGN
- Winds versus jets: a comparison between black hole feedback modes in simulations of idealized galaxy groups and clusters
- On the consistency of jet feedback modelling across different astrophysics hydrodynamical codes