Signature of Supersonic Turbulence in Galaxy Clusters Revealed by AGN-driven H Filaments
arXiv:2203.04977 · doi:10.3847/2041-8213/ac6601
Abstract
The hot intracluster medium (ICM) is thought to be quiescent with low observed velocity dispersions. Surface brightness fluctuations of the ICM also suggest that its turbulence is subsonic with a Kolmogorov scaling relation, indicating that the viscosity is suppressed and the kinetic energy cascades to small scales unscathed. However, recent observations of the cold gas filaments in galaxy clusters find that the scaling relations are steeper than that of the hot plasma, signaling kinetic energy losses and the presence of supersonic flows. In this work we use high-resolution simulations to explore the turbulent velocity structure of the cold filaments at the cores of galaxy clusters. Our results indicate that supersonic turbulent structures can be "frozen" in the cold gas that cools and fragments out of a fast, K outflow driven by the central active galactic nucleus (AGN), when the radiative cooling time is shorter than the dynamical sound-crossing time. After the cold gas formation, however, the slope of the velocity structure function (VSF) flattens significantly over short, 10 Myr timescales. The lack of flattened VSF in observations of H filaments indicates that the H-emitting phase is short-lived for the cold gas in galaxy clusters. On the other hand, the ubiquity of supersonic turbulence revealed by observed filaments strongly suggests that supersonic outflows are an integral part of AGN-ICM interaction, and that AGN activity plays a crucial role at driving turbulence in galaxy clusters.
9 pages, 4 figures, accepted for publication in ApJL
References in corpus (12)
- The Quiescent Intracluster Medium in the Core of the Perseus Cluster
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- Formation of cold filaments in cooling flow clusters
- Direct Detection of Black Hole-Driven Turbulence in the Centers of Galaxy Clusters
- Suppressed effective viscosity in the bulk intergalactic plasma
- Velocity structure functions in multiphase turbulence: interpreting kinematics of H filaments in cool core 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
- Measuring Turbulence with Young Stars in the Orion Complex
- Chaotic cold accretion in giant elliptical galaxies heated by AGN cosmic rays
- On the Mass Loading of AGN-Driven Outflows in Elliptical Galaxies and Clusters
- Dynamics and Morphology of Cold Gas in Fast, Radiatively Cooling Outflows: Constraining AGN Energetics with Horseshoes
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- AGN Feedback in Groups and Clusters of Galaxies
- Radio jet-ISM interaction and positive radio-mechanical feedback in Abell 1795
- XMAGNET: Velocity structure functions of active galactic nucleus-driven turbulence in the multiphase intracluster medium
- Observations of AGN-driven feedback: dynamics and ionization of the filaments in M87