Oxygen Absorption in M87: Evidence for a Warm+Hot ISM
arXiv:astro-ph/0008408 · doi:10.1086/319017
Abstract
We present a re-analysis of the ROSAT PSPC data within the central 100 kpc of M87 to search for intrinsic oxygen absorption similar to that recently measured in several galaxies and groups. Using a spatial-spectral deprojection analysis we find the strongest evidence to date for intrinsic oxygen absorption in the hot gas of a galaxy, group, or cluster. Single-phase plasma models modified by intervening Galactic absorption cannot fit the 0.2-2.2 keV PSPC data as they under-predict the 0.2-0.4 keV region and over-predict the 0.5-0.8 keV region where the emission and absorption residuals are obvious upon visual inspection of the spectral fits. Since the excess emission between 0.2-0.4 keV rules out intrinsic absorption from cold gas or dust, the most reasonable model for the excess emission and absorption features is warm, collisionally ionized gas with a temperature of ~10^6 K. Simple multiphase models (cooling flow, two phases) modified by both intervening Galactic absorption and by a single oxygen edge provide good fits and yield temperatures and Fe abundances of the hot gas that agree with previous determinations by ASCA and SAX. The multiphase models of M87 inferred from the PSPC can account for the excess EUV emission observed with EUVE and the excess X-ray absorption inferred from EINSTEIN and ASCA data above 0.5 keV. Although the total mass of the warm gas implied by the oxygen absorption is consistent with the matter deposited by a cooling flow, the suppression of the mass deposition rate and the distortion of the X-ray isophotes in the region where the radio emission is most pronounced suggest some feedback effect from the AGN on the cooling gas. (Abridged)
17 pages (13 figures), Accepted for Publication in The Astrophysical Journal
References in corpus (9)
- M87 at 90cm: A Different Picture
- Deconvolution of ASCA X-ray data: II. Radial temperature and metallicity profiles for 106 galaxy clusters
- Iron Gradients in Cooling Flow Galaxies and Groups
- Hard X-ray emission from elliptical galaxies
- The multiphase nature of the intra-cluster medium of some clusters of galaxies
- Oxygen Absorption in Cooling Flows
- ROSAT Evidence for Intrinsic Oxygen Absorption in Cooling Flow Galaxies and Groups
- X-ray colour maps of the cores of galaxy clusters
- On the Internal Absorption of Galaxy Clusters
Cited by in corpus (13)
- Hot Gas In and Around Elliptical Galaxies
- X-ray Emission from the Hot ISM and SW Radio Lobe of the Nearby Radio Galaxy Centaurus A
- Heated Cooling Flows
- The soft X-ray emission in a large sample of galaxy clusters with ROSAT PSPC
- Soft X-ray excess emission in clusters of galaxies observed with XMM-Newton
- Observational evidence for gravitationally trapped massive axion(-like) particles
- Searching for the missing iron in the core of the Centaurus cluster
- A massive warm baryonic halo in the Coma cluster
- A Chandra X-ray Analysis of Abell 1664: Cooling, Feedback and Star Formation in the Central Cluster Galaxy
- Sersic 159-03: discovery of the brightest soft X-ray excess emitting cluster of galaxies
- Spatial Diffusion of X-ray Emission Lines in the M87 Cooling Flow; Evidence for Absorption
- Confrontation of Intracluster and Interstellar Gas in Cluster-Centered Elliptical Galaxies: M87 in Virgo and NGC 4874 in Coma
- EUV excess in the inner Virgo cluster