Origin of central abundances in the hot intra-cluster medium - II. Chemical enrichment and supernova yield models
arXiv:1608.03888 · doi:10.1051/0004-6361/201628765
Abstract
The hot intra-cluster medium (ICM) is rich in metals, which are synthesised by supernovae (SNe) and accumulate over time into the deep gravitational potential well of clusters of galaxies. Since most of the elements visible in X-rays are formed by type Ia (SNIa) and/or core-collapse (SNcc) supernovae, measuring their abundances gives us direct information on the nucleosynthesis products of billions of SNe since the epoch of the star formation peak (z~2-3). In this study, we compare the most accurate average X/Fe abundance ratios (compiled in a previous work from XMM-Newton EPIC and RGS observations of 44 galaxy clusters, groups, and ellipticals), representative of the chemical enrichment in the nearby ICM, to various SNIa and SNcc nucleosynthesis models found in the literature. The use of a SNcc model combined to any favoured standard SNIa model (deflagration or delayed-detonation) fails to reproduce our abundance pattern. In particular, the Ca/Fe and Ni/Fe ratios are significantly underestimated by the models. We show that the Ca/Fe ratio can be reproduced better, either by taking a SNIa delayed-detonation model that matches the observations of the Tycho supernova remnant, or by adding a contribution from the Ca-rich gap transient SNe, whose material should easily mix into the hot ICM. On the other hand, the Ni/Fe ratio can be reproduced better by assuming that both deflagration and delayed-detonation SNIa contribute in similar proportions to the ICM enrichment. In either case, the fraction of SNIa over the total number of SNe (SNIa+SNcc) contributing to the ICM enrichment ranges within 29-45%. This fraction is found to be systematically higher than the corresponding SNIa/SNe fraction contributing to the enrichment of the proto-solar environnement (15-25%). We also discuss and quantify two useful constraints on both SNIa and SNcc that can be inferred from the ICM abundance ratios.
18 pages, 11 figures, accepted for publication in A&A
References in corpus (22)
- Cosmic Star Formation History
- Galactic chemical evolution: Carbon through Zinc
- Rates and properties of type Ia supernovae as a function of mass and star-formation in their host galaxies
- The Peculiar SN 2005hk: Do Some Type Ia Supernovae Explode as Deflagrations?
- Strong Ultraviolet Pulse From a Newborn Type Ia Supernova
- Type Ia Supernovae as Stellar Endpoints and Cosmological Tools
- XMM-Newton and Chandra Cross Calibration Using HIFLUGCS Galaxy Clusters: Systematic Temperature Differences and Cosmological Impact
- Late-Time Spectroscopy of SN 2002cx: The Prototype of a New Subclass of Type Ia Supernovae
- Chemical enrichment in the cluster of galaxies Hydra A
- Constraining supernova models using the hot gas in clusters of galaxies
- A Chandrasekhar Mass Progenitor for the Type Ia Supernova Remnant 3C 397 from The Enhanced Abundances of Nickel and Manganese
- The ejected mass distribution of type Ia supernovae: A significant rate of non-Chandrasekhar-mass progenitors
- Observations of metals in the intra-cluster medium
- Chemical Enrichment RGS cluster sample (CHEERS): Constraints on turbulence
- Chemical evolution in Sersic 159-03 observed with XMM-Newton
- On the fraction of intermediate-mass close binaries that explode as type-Ia supernovae
- Chemical Evolution on the Scale of Clusters of Galaxies: A Conundrum?
- Type Ia and II supernovae contributions to the metal enrichment in intra-cluster medium observed with Suzaku
- Abundance and temperature distributions in the hot intra-cluster gas of Abell 4059
- Constraints on explosive silicon burning in core-collapse supernovae from measured Ni/Fe ratios
- Abundances in the Ejecta of Core Collapse Supernova Remnants, G350.1-0.3 and G349.7+0.2
- 5.9 keV Mn K-shell X-ray luminosity from the decay of 55Fe in Type Ia supernova models
Cited by in corpus (8)
- Solar abundance ratios of the iron-peak elements in the Perseus Cluster
- A uniform metallicity in the outskirts of massive, nearby galaxy clusters
- CHEERS: The chemical evolution RGS sample
- X-ray spectra of the Fe-L complex
- iPTF15eqv: Multi-wavelength Exposé of a Peculiar Calcium-rich Transient
- Science with hot astrophysical plasmas
- Neutrino Spectra from Nuclear Weak Interactions in -Shell Nuclei Under Astrophysical Conditions
- CHEERS: Future perspectives for abundance measurements in clusters with XMM-Newton