Chandra Observations of Abell 2029: No Cooling Flow and a Steep Abundance Gradient
arXiv:astro-ph/0205374 · doi:10.1086/341990
Abstract
We have obtained high spatial resolution temperature and abundance profiles for the galaxy cluster Abell 2029 with the Chandra ACIS-S instrument. Our observations reveal that the spectra are well-fit by a single-phase gas in each annulus. While the temperature of the intracluster medium drops from ~9 keV at 3 arcmin (260 kpc) to 3 keV in the central 5 arcsec (5 kpc) of the cluster, there is no evidence for gas emitting at temperatures below 3 keV. The addition of a cooling flow component does not improve the fits, despite previous claims for a massive cooling flow. There is also no evidence for excess absorption above the Galactic N_H value. We also observe a steep Fe abundance gradient, such that Z_Fe >= 2 Z_solar (assuming meteoritic solar Fe abundance) in the core, consistent with significant enrichment from Fe-rich Type Ia supernovae in the cD galaxy. The Fe abundance drops to ~0.5 Z_solar at 3 arcmin (260 kpc), in good agreement with previous BeppoSAX measurements. The high resolution image reveals neither a strong central point source, nor any filamentary structure related to a cooling flow or a merger. The absence of a strong merger signature argues against the creation of the wide-angle-tail radio source morphology in a merger event. (modified for astro-ph).
5 pages (latex emulateapj5 format), 5 eps figures, To Appear in ApJ Letters
References in corpus (2)
Cited by in corpus (45)
- Hot Gas In and Around Elliptical Galaxies
- Spatially resolved X-ray spectroscopy of cooling clusters of galaxies
- Thermal conduction and reduced cooling flows in galaxy clusters
- The dark matter halos of massive, relaxed galaxy clusters observed with Chandra
- Chandra Observations of Abell 2029: The Dark Matter Profile Down to <0.01 R_vir in an Unusually Relaxed Cluster
- Why Do Only Some Galaxy Clusters Have Cool Cores?
- The Complex Cooling Core of Abell 2029: Radio and X-ray Interactions
- Properties of cluster satellites in hydrodynamical simulations
- AGN jet feedback on a moving mesh: cocoon inflation, gas flows and turbulence
- Entropy Profiles in the Cores of Cooling Flow Clusters of Galaxies
- A search for diffuse radio emission in the relaxed, cool-core galaxy clusters A1068, A1413, A1650, A1835, A2029, and Ophiuchus
- A census of cool core galaxy clusters in IllustrisTNG
- XMM-Newton and Chandra Observations of the Galaxy Group NGC 5044. II. Metal Abundances and Supernova Fraction
- Non-Baryonic Dark Matter in Cosmology
- The slope of the mass profile and the tilt of the fundamental plane in early-type galaxies
- The Absence of Adiabatic Contraction of the Radial Dark Matter Profile in the Galaxy Cluster A2589
- X-ray observations of the galaxy cluster Abell 2029 to the virial radius
- Chemical Evolution on the Scale of Clusters of Galaxies: A Conundrum?
- Spin-driven jet feedback in idealised simulations of galaxy groups and clusters
- Jet termination in wide-angle tailed radio sources
- The Dark Matter Radial Profile in the Core of the Relaxed Cluster A2589
- The effects of ellipticity and substructure on estimates of cluster density profiles based on lensing and kinematics
- Cooling flows or warming rays?
- AGN jet feedback on a moving mesh: gentle cluster heating by weak shocks and lobe disruption
- Enhancing AGN efficiency and cool-core formation with anisotropic thermal conduction
- Time-dependent Circulation Flows: Iron Enrichment in Cooling Flows with Heated Return Flows
- Characterizing the Properties of Clusters of Galaxies as a Function of Luminosity and Redshift
- Warming rays in cluster cool cores
- XMM observation of the dynamically young galaxy cluster CL 0939+4713
- Extracting the Dark Matter Profile of a Relaxed Galaxy Cluster
- X-ray temperature spectroscopy of simulated cooling clusters
- The Massively Accreting Cluster A2029
- The Heated Core of the Radio-Quiet Galaxy Cluster A644
- On The Road To More Realistic Galaxy Cluster Simulations: The Effects of Radiative Cooling and Thermal Feedback Prescriptions on the Observational Properties of Simulated Galaxy Clusters
- FUSE search for 10^5-10^6 K gas in the rich clusters of galaxies Abell 2029 and Abell 3112
- X-ray Absorption Toward Abell 2029 due to a Foreground Spiral
- Core Structure of Intracluster Gas: Isothermal Hydrostatic Equilibrium
- I. Analysis of candidates for interacting galaxy clusters
- Core Structure of Intracluster Gas: Effects of Radiative Cooling on Core Sizes
- On the Relationship between Cooling Flows and Bubbles
- Narrow Band X-ray Photometry as a Tool for Studying Galaxy and Cluster Mass Distributions
- Spectral imaging of the thermal Sunyaev-Zel'dovich effect in X-COP galaxy clusters: method and validation
- Discovery of Radio Jets in Phoenix Galaxy Cluster Center
- ASCA and XMM-Newton Observations of A2029
- The clus model in SPEX: projection and resonant scattering effects on the iron abundance and temperature profiles of galaxy clusters