Some effects of small-scale metallicity variations in cooling flows
arXiv:astro-ph/0209559 · doi:10.1046/j.1365-8711.2003.06104.x
Abstract
In an attempt to reconcile recent spectral data with predictions of the standard cooling flow model, it has been suggested that the metals in the intracluster medium (ICM) might be distributed inhomogeneously on small scales. We investigate the possible consequences of such a situation within the framework of the cooling flow scenario. Using the standard isobaric cooling flow model, we study the ability of such metallicity variations to preferentially suppress low-temperature line emission in cooling flow spectra. We then use simple numerical simulations to investigate the temporal and spatial evolution of the ICM when the metals are distributed in such a fashion. Simulated observations are used to study the constraints real data can place on conditions in the ICM. The difficulty of ruling out abundance variations on small spatial scales with current observational limits is emphasized. We find that a bimodal distribution of metals may give rise to interesting effects in the observed abundance profile, in that apparent abundance gradients with central abundance drops and off-centre peaks, similar to those seen recently in some clusters, are produced. Different elements behave in different fashion as governed by the temperature dependence of their equivalent widths. Our overall conclusion is that, whilst this process alone seems unlikely to be able to account for the sharp reduction in low temperature emission lines seen in current spectral data, a contribution at some level is possible and difficult to rule out. The possibility of small-scale metallicity variations should be considered when analysing high resolution cluster X-ray spectra.
14 pages, 10 figures. Accepted for publication in MNRAS
References in corpus (3)
Cited by in corpus (33)
- Modified Newtonian Dynamics (MOND): Observational Phenomenology and Relativistic Extensions
- A deep Chandra observation of the Perseus cluster: shocks and ripples
- High Resolution X-ray Spectroscopic Constraints on Cooling-Flow Models for Clusters of Galaxies
- X-ray Spectroscopy of Cooling Clusters
- Hot Gas In and Around Elliptical Galaxies
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- 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
- Heating cooling flows with jets
- Thermal conduction and reduced cooling flows in galaxy clusters
- Evidence for AGN Feedback in Galaxy Clusters and Groups
- Mapping small-scale temperature and abundance structures in the core of the Perseus cluster
- An old galaxy group: Chandra X-ray observations of the nearby fossil group NGC 6482
- X-ray Group and cluster mass profiles in MOND: Unexplained mass on the group scale
- Cool X-ray emitting gas in the core of the Centaurus cluster of galaxies
- A Chandra Study of the Complex Structure in the Core of 2A 0335+096
- Feedback from Intra-Cluster Supernovae on the ICM in Cooling Flow Galaxy Clusters
- Multifrequency VLA radio observations of the X-ray cavity cluster of galaxies RBS797: evidence of differently oriented jets
- AWM 4 - an isothermal cluster observed with XMM-Newton
- Searching for the missing iron in the core of the Centaurus cluster
- A volume-limited sample of X-ray galaxy groups and clusters: III. Central abundance drops
- Resonance scattering, absorption and off-centre abundance peaks in clusters of galaxies
- Inhomogeneity in the Hot Intracluster Medium of Abell 1060 Observed with Chandra
- A Chandra X-ray Analysis of Abell 1664: Cooling, Feedback and Star Formation in the Central Cluster Galaxy
- Different Methods of Forming Cold Fronts in Non-Merging Clusters
- Time-dependent Circulation Flows: Iron Enrichment in Cooling Flows with Heated Return Flows
- Shatter or not: role of temperature and metallicity in the evolution of thermal instability
- An XMM-Newton observation of the galaxy group MKW 4
- Chandra observation of the core of the galaxy cluster AWM7
- Cooling of X-ray Emitting Gas by Heat Conduction in the Center of Cooling Flow Clusters
- Thermal Evolution of Supernova Iron in Elliptical Galaxies
- Excess Ionization and Soft X-ray Emission from Cooling Flow Clusters
- On the Relationship between Cooling Flows and Bubbles
- Investigating AGN feedback in H-luminous galaxy clusters: first Chandra X-ray analysis of Abell 2009