On the impact of AGN feedback modes onto the turbulent properties of the multiphase ICM
arXiv:2410.07314 · doi:10.1051/0004-6361/202452549
Abstract
The feedback from active galactic nuclei (AGN) plays a crucial role in regulating the thermodynamics and the dynamics of the intracluster medium (ICM). Studying the turbulent patterns of the hot and warm ionized phases may allow us to determine how these phases are involved in the AGN cycle and the amount of turbulent pressure generated by the latter. In this work, we use new simulations to study the turbulent motions created by different types of AGN feedback in a cool core cluster and predict the observable signatures with the latest X-ray telescopes (e.g. XRISM). We run several hydrodynamic simulations with ENZO, simulating the self-regulated cycles of AGN feedback, starting from a static ICM in a cluster that represents the Perseus cluster. We study in detail different feedback modes: from pure kinetic precessing jets up to almost pure thermal feedback. Our analysis reveals that the gas velocity dispersion in the center of the cluster correlates in time with the peaks of the AGN activity and that more than 50% of the time, different feedback modalities produce the velocity dispersion observed in the Perseus cluster while leading to distinct geometrical distributions and velocity dispersion profiles. Moreover, we do not find a significant kinematic coupling between the hot and the cold phase kinematics. We find a correlation between the AGN activity and the steepening of the velocity function structure (VSF) and that the projected 2D VSF slopes are never trivially correlated with the 3D VSF ones. This line of research will allow us to use incoming detections of gas turbulent motions detectable by XRISM (or future instruments) to better constrain the duty cycle, energetics and energy dissipation modalities of AGN feedback in massive clusters of galaxies.
20 pages, 12 figures, 1 table. Submitted to A&A
References in corpus (32)
- The Statistics of Supersonic Isothermal Turbulence
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- The Quiescent Intracluster Medium in the Core of the Perseus Cluster
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- Regulation of star formation in giant galaxies by precipitation, feedback, and conduction
- How AGN Jets Heat the Intracluster Medium -- Insights from Hydrodynamic Simulations
- Linking Macro, Meso, and Micro Scales in Multiphase AGN Feeding and Feedback
- A Very Deep Chandra Observation of the Galaxy Group NGC 5813: AGN Shocks, Feedback, and Outburst History
- Formation of cold filaments in cooling flow clusters
- AGN self-regulation in cooling flow clusters
- Metal-rich multi-phase gas in M87: AGN-driven metal transport, magnetic-field supported multi-temperature gas, and constraints on non-thermal emission observed with XMM-Newton
- Constraining Gas Motions in the Intra-Cluster Medium
- Direct Detection of Black Hole-Driven Turbulence in the Centers of Galaxy Clusters
- Stopping Cooling Flows with Jets
- Hot gaseous atmospheres in galaxy groups and clusters are both heated and cooled by X-ray cavities
- AGN-stimulated Cooling of Hot Gas in Elliptical Galaxies
- AGN jet feedback on a moving mesh: gentle cluster heating by weak shocks and lobe disruption
- Velocity structure functions in multiphase turbulence: interpreting kinematics of H filaments in cool core clusters
- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- The formation of dusty cold gas filaments from galaxy cluster simulations
- Non-Kolmogorov turbulence in multiphase intracluster medium driven by cold gas precipitation and AGN jets
- Self-regulated AGN feedback of light jets in cool-core galaxy clusters
- X-ray-inferred kinematics of the core ICM in Perseus-like clusters: Insights from the TNG-Cluster simulation
- Exploring the relation between turbulent velocity and density fluctuations in the stratified intracluster medium
- The Velocity Statistics of Turbulent Clouds in the Presence of Gravity, Magnetic fields, Radiation, and Outflow Feedback
- The Source of Mass Accreted by the Central Black Hole in Cooling Flow Clusters
- Backflows by AGN jets: Global properties and influence on SMBH accretion
- Empirical constraints on the turbulence in QSO host nebulae from velocity structure function measurements
- An Atlas of Gas Motions in the TNG-Cluster Simulation: from Cluster Cores to the Outskirts
- Projected velocity statistics of interstellar turbulence
- Measuring the hot ICM velocity structure function using XMM-Newton observations
- The properties of magnetised cold filaments in a cool-core galaxy cluster