The Chemical and Thermal Structure of the Hot Atmosphere of the Elliptical Galaxy NGC 5813
arXiv:2209.09276 · doi:10.1093/mnras/stac2645
Abstract
We present a robust representation of the chemical and thermal structure in the galaxy group NGC 5813 using archival, deep X-ray observations, and employing a multi-temperature spectral model based on up to date atomic line emission databases. The selection of our target is motivated by the fact that NGC 5813 has a very relaxed morphology, making it a promising candidate for the study of the AGN feedback's influence in the intra-group medium (IGrM). Our results showcase a prominent, extended distribution of cool gas along the group's NE-SW direction, correlating with the direction along which the supermassive black hole in the group's central galaxy is known to interact with the IGrM. Our analysis indicates gas being uplifted from the group's centre as the probable origin of the cool gas, although alternative scenarios, such as in-situ cooling can not be explicitly ruled out. Regarding the chemical structure of the IGrM, and unlike previous findings in massive clusters, we find no evidence for recent metal transport by jets/lobes from the central AGN. Instead, elemental abundances remain near Solar on average across the group. The distribution of elements appears to be independent of galactocentric radius, azimuth and the thermodynamics of the gas, suggesting that the IGrM has been efficiently mixed. The large scale uniformity of the abundance distribution implies the presence of complex dynamical processes in NGC 5813, despite its overall relaxed morphology. Past events of extreme AGN feedback or sloshing could be the primary mechanisms behind this.
16 pages, 17 figures, accepted for publication in MNRAS
References in corpus (15)
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- Shocks and cold fronts in galaxy clusters
- The origin of cold fronts in the cores of relaxed galaxy clusters
- The Regulation of Cooling and Star Formation in Luminous Galaxies by AGN Feedback and the Cooling-Time/Entropy Threshold for the Onset of Star Formation
- An Entropy Threshold for Strong H-alpha and Radio Emission in the Cores of Galaxy Clusters
- Contour binning: a new technique for spatially-resolved X-ray spectroscopy applied to Cassiopeia A
- Chemical enrichment in the cluster of galaxies Hydra A
- Temperature and abundance profiles of hot gas in galaxy groups - I. Results and statistical analysis
- 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
- A uniform metallicity in the outskirts of massive, nearby galaxy clusters
- Conduction and the Star-Formation Threshold in Brightest Cluster Galaxies
- CHEERS: The chemical evolution RGS sample
- LOFAR Observations of X-ray Cavity Systems
- ALMA observation of the disruption of molecular gas in M87
- X-ray spectra of the Fe-L complex II: atomic data constraints from EBIT experiment and X-ray grating observations of Capella