XMM-Newton high-resolution spectroscopy reveals the chemical evolution of M 87
arXiv:astro-ph/0608177 · doi:10.1051/0004-6361:20065678
Abstract
We present here a study of chemical abundances in the giant elliptical galaxy M 87 using high-resolution spectra obtained with the Reflection Grating Spectrometers during two deep XMM-Newton observations. While we confirm the two-temperature structure of the inter-stellar medium (ISM) in M 87, we also show that a continuous temperature distribution describes the data equally well. The high statistics allows us, for the first time, to determine relatively accurate abundance values also for carbon and nitrogen. The comparison of the abundance ratios of C, N, O and Fe in the ISM of M 87 with those in the stellar population of our Galaxy shows that the relative contribution of core-collapse supernovae to the enrichment of the ISM in M 87 is significantly less than in the Milky Way and indicates that the enrichment of the ISM by iron through Type Ia supernovae and by carbon and nitrogen is occurring in parallel. This suggests that the main source of carbon and nitrogen in M 87 are the low- and intermediate-mass asymptotic giant branch stars. From the oxygen to iron abundance ratio in the hot gas we estimate that the relative number of core collapse and type Ia supernovae contributing to the enrichment of the ISM in the core of M 87 is ~60% and ~40% respectively. The spatial distributions of iron and oxygen are different. While the oxygen abundance distribution is flat the iron abundance peaks in the core and has a gradient throughout the ~4' wide field of view of the instrument, suggesting an early enrichment by core-collapse supernovae and a continuous contribution of type Ia supernovae.
Accepted for publication in A&A
References in corpus (2)
Cited by in corpus (25)
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- Chemical enrichment in the cluster of galaxies Hydra A
- 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
- The uniformity and time-invariance of the intra-cluster metal distribution in galaxy clusters from the IllustrisTNG simulations
- Observations of metals in the intra-cluster medium
- X-MAS2: Study Systematics on the ICM Metallicity Measurements
- Type Ia and II supernovae contributions to the metal enrichment in intra-cluster medium observed with Suzaku
- CHEERS: The chemical evolution RGS sample
- Shaping the X-ray spectrum of galaxy clusters with AGN feedback and turbulence
- The gaseous atmosphere of M87 seen with XMM-Newton
- X-ray spectra of the Fe-L complex
- The metal content of the hot atmospheres of galaxy groups
- X-ray spectra of the Fe-L complex II: atomic data constraints from EBIT experiment and X-ray grating observations of Capella
- Spatially-resolved properties of early-type group-dominant galaxies with MUSE: gas content, ionisation mechanisms and metallicity gradients
- The SRG/eROSITA All-Sky Survey: View of the Virgo Cluster
- The metal contents of two groups of galaxies
- Chemical enrichment of the ICM within the Virgo cluster I: radial profiles
- Elemental Abundances of the Hot Atmosphere of Luminous Infrared Galaxy Arp 299
- Chemical enrichment in groups and clusters
- CIELO-RGS: a catalogue of soft X-ray ionized emission lines
- Core to Cosmic Edge: SIMBA-C's New Take on Abundance Profiles in the Intragroup Medium at z = 0
- A Heavy-Metal Scenario of Ultra-High-Energy Cosmic Rays
- High resolution X-ray spectra of the compact binary supersoft X-ray source CAL 87
- Chemical enrichment of ICM within the A3266 cluster I: radial profiles
- A Chandra view of SPT-CL J0217-5014: a massive galaxy cluster at a cosmic intersection at z=0.53