The Enrichment History of Hot Gas in Poor Galaxy Groups
arXiv:astro-ph/9808085 · doi:10.1086/306665
Abstract
We have analyzed the ASCA SIS and GIS data for seventeen groups and determined the average temperature and abundance of the hot x-ray emitting gas. For groups with gas temperatures less than 1.5 keV we find that the abundance is correlated with the gas temperature and luminosity. We have also determined the abundance of the alpha-elements and iron independently for those groups with sufficient counts. We find that for the cool groups (i.e. kT <1.5 keV) the ratio of alpha-elements to iron is ~1, about half that seen in clusters. Spectral fits with the S, Si and Fe abundances allowed to vary separately suggest the S/Fe ratio is similar to that seen in clusters while the Si/Fe ratio in groups is half the value determined for richer systems. The mass of metals per unit blue luminosity drops rapidly in groups as the temperature drops. There are two possible explanations for this decrease. One is that the star formation in groups is very different from that in rich clusters. The other explanation is that groups lose much of their enriched material via winds during the early evolution of ellipticals. If the latter is true, we find that poor groups will have contributed significantly (roughly 1/3 of the metals) to the enrichment of the intergalactic medium.
19 Pages with 2 figures, Accepted for publication in the Astrophysical Journal
Cited by in corpus (40)
- X-ray Properties of Groups of Galaxies
- Metal Enrichment of the Intergalactic Medium in Cosmological Simulations
- The Lx-T, Lx-sigma and sigma-T relations for groups and clusters of galaxies
- X-Ray Evidence for Multiphase Hot Gas with Nearly Solar Fe Abundances in the Brightest Groups of Galaxies
- Explaining the entropy excess in clusters and groups of galaxies without additional heating
- The Isolated Elliptical NGC 1132: Evidence For a Merged Group of Galaxies?
- Clustering of Galaxies in a Hierarchical Universe: III. Mock Redshift Surveys
- Cooling and heating the ICM in hydrodynamical simulations
- Temperature and abundance profiles of hot gas in galaxy groups - I. Results and statistical analysis
- The Population of Weak MgII Absorbers. II The Properties of Single-Cloud Systems
- Iron abundance in the ICM at high redshift
- O VI and Multicomponent H I Absorption Associated with a Galaxy Group in the Direction of PG0953+415: Physical Conditions and Baryonic Content
- The Ionization and Metallicity of the Intervening O VI Absorber at z = 0.1212 in the Spectrum of H1821+643
- Heating of Intergalactic Gas and Cluster Scaling Relations
- XMM-Newton and Chandra Observations of the Galaxy Group NGC 5044. II. Metal Abundances and Supernova Fraction
- X-Ray Scaling Relations of Galaxy Groups in a Hydrodynamic Cosmological Simulation
- The RASSCALS: An X-ray and Optical Study of 260 Galaxy Groups
- Enrichment and Pre-Heating in Intragroup Gas from Galactic Outflows
- XMM-Newton Observation of an X-ray Trail Between the Spiral Galaxy NGC6872 and the Central Elliptical NGC6876 in the Pavo Group
- Enrichment of the Intergalactic Medium by Radiation Pressure Driven Dust Efflux
- Mass and Metallicity of Five X-ray Bright Galaxy Groups
- Gas Sloshing and Bubbles in the Galaxy Group NGC 5098
- Metallicity Gradients in the Intracluster Gas of Abell 496
- The metal content of the hot atmospheres of galaxy groups
- Probing Cosmology with the X-ray Forest
- Detection of Excess Hard X-ray Emission from the Group of Galaxies HCG62
- Apparent high metallicity in 3-4 keV galaxy clusters: the inverse iron-bias in action in the case of the merging cluster Abell 2028
- The Star Cluster Population in the Tidal Tails of NGC 6872
- Infrared Emission from Intracluster Dust Grains and Constraints on Dust Properties
- An XMM-Newton study of the RGH 80 galaxy group
- The detection of diffuse emission in HCG 16 with XMM-Newton
- Constraints on a Local Group X-ray Halo
- Primordial magnetic seed field amplification by gravitational waves
- Extended Thermal X-ray Emission from the Spiral-Dominant Group of Galaxies HCG 57
- The Chandra view of NGC1800 and the X-ray scaling properties of dwarf starbursts
- Implications of the Universal Temperature Profile for Galaxy Clusters
- Cosmological Implications and Physical Properties of an X-Ray Flux-Limited Sample of Galaxy Clusters
- Cooling flows and the entropy of the intragroup medium
- Detection of Outflowing and Extraplanar Gas in Disks in an Assembling Galaxy Cluster at z=0.37
- Search for Hot Gas in the Local Group with ASCA