H-X-ray Surface Brightness Correlation for Filaments in Cooling Flow Clusters
arXiv:2501.01902 · doi:10.1038/s41550-024-02473-8
Abstract
Massive galaxies in cooling flow clusters display clear evidence of feedback from Active Galactic Nuclei (AGN). Joint X-ray and radio observations have shown that AGN radio jets push aside the surrounding hot gas and form cavities in the hot intracluster medium (ICM). These systems host complex, kiloparsec-scale, multiphase filamentary structures, from warm ionized (10,000 K) to cold molecular (100 K). These striking clumpy filaments are believed to be a natural outcome of thermally unstable cooling from the hot ICM, likely triggered by feedback processes while contributing to feeding the AGN via Chaotic Cold Accretion (CCA). However, the detailed constraints on the formation mechanism of the filaments are still uncertain, and the connection between the different gas phases has to be fully unveiled. By leveraging a sample of seven X-ray bright cooling-flow clusters, we have discovered a tight positive correlation between the X-ray surface brightness and the H surface brightness of the filaments over two orders of magnitude, as also found in stripped tails.
Accepted for publication in Nature Astronomy, 32 pages, 10 figures
References in corpus (24)
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- Heating Hot Atmospheres with Active Galactic Nuclei
- The MAPPINGS III Library of Fast Radiative Shock Models
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- A deeper X-ray study of the core of the Perseus galaxy cluster: the power of sound waves and the distribution of metals and cosmic rays
- Raining on black holes and massive galaxies: the top-down multiphase condensation model
- Cold molecular gas in the Perseus cluster core - Association with X-ray cavity, Halpha filaments and cooling flow -
- Magnetic support of the optical emission line filaments in NGC 1275
- Observational Constraints on the Feeding of Supermassive Black Holes
- X-ray cavities in a sample of 83 SPT-selected clusters of galaxies: Tracing the evolution of AGN feedback in clusters of galaxies out to z=1.2
- Collisional heating as the origin of filament emission in galaxy clusters
- Linking Macro, Meso, and Micro Scales in Multiphase AGN Feeding and Feedback
- Radially-Inflowing Molecular Gas in NGC 1275 Deposited by a X-ray Cooling Flow in the Perseus Cluster
- GASP XXIII: A jellyfish galaxy as an astrophysical laboratory of the baryonic cycle
- The origin of molecular hydrogen emission in cooling-flow filaments
- Sparsity and adaptivity for the blind separation of partially correlated sources
- Optimal fitting of gaussian-apodized or under-resolved emission lines in Fourier Transform spectra providing new insights on the velocity structure of NGC 6720
- LOFAR Observations of X-ray Cavity Systems
- Observations of CO in the eastern filaments of NGC 1275
- Non-Kolmogorov turbulence in multiphase intracluster medium driven by cold gas precipitation and AGN jets
- The Presence of Thermally Unstable X-ray Filaments and the Production of Cold Gas in the NGC 5044 Group
- Constraining star formation rates in cool-core brightest cluster galaxies
- A novel method for component separation of extended sources in X-ray astronomy
- AGN feedback duty cycle in Planck SZ selected clusters using Chandra observations