Enriching the hot circumgalactic medium
arXiv:1304.4730 · doi:10.1093/mnras/stt649
Abstract
Models of galaxy formation in a CDM universe predict that massive galaxies are surrounded by a hot, quasi-hydrostatic circumgalactic corona of slowly cooling gas, predominantly accreted from the IGM. This prediction is borne out by the cosmological hydrodynamical simulations of Crain et al., which reproduce scaling relations between the X-ray and optical properties of nearby disc galaxies. Such coronae are metal poor, but observations of the X-ray emitting circumgalactic medium (CGM) of local galaxies typically indicate enrichment to near-solar iron abundance, potentially signalling a shortcoming in galaxy formation models. We show here that, while the hot CGM of galaxies formed in the simulations is metal poor in a mass-weighted sense, its X-ray luminosity-weighted metallicity is often close to solar. This bias arises because the soft X-ray emissivity of a typical 0.1 keV corona is dominated by collisionally-excited metal ions that are synthesised in stars and recycled into the hot CGM. We find that these metals are ejected primarily by stars that form in-situ to the main progenitor of the galaxy, rather than in satellites or external galaxies. The enrichment of the hot CGM therefore proceeds in an inside-out fashion throughout the assembly of the galaxy: metals are transported from the central galaxy by SNe-driven winds and convection over several gigayears, establishing a strong negative radial metallicity gradient. Whilst metal ions synthesised by stars are necessary to produce the X-ray emissivity that enables the hot CGM of isolated galaxies to be detected, the electrons that collisionally excite them are equally important. Since our simulations indicate that the electron density of hot coronae is dominated by the metal-poor gas accreted from the IGM, we infer that the hot CGM observed via X-ray emission is the outcome of both hierarchical accretion and stellar recycling.
Accepted for publication in MNRAS. 21 pages, 13 figures, 1 table. Comments welcome
References in corpus (19)
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Massloss of galaxies due to a UV-background
- Ages and metallicities of early-type galaxies in the SDSS: new insight into the physical origin of the colour-magnitude and the Mg2-sigmaV relations
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- The MORGANA model for the rise of galaxies and active nuclei
- X-ray coronae in simulations of disc galaxy formation
- X-ray thermal coronae of galaxies in hot clusters -- ubiquity of embedded mini cooling cores
- A large population of metal-rich, compact, intergalactic C IV absorbers - Evidence for poor small-scale metal mixing
- On the Origin of Cores in Simulated Galaxy Clusters
- The Hot Gas Content of Low-Luminosity Early-Type Galaxies and the Implications Regarding Supernova Heating and AGN Feedback
- Modelling Shock Heating in Cluster Mergers: I. Moving Beyond the Spherical Accretion Model
- First results of the XI Groups Project: Studying an unbiased sample of galaxy groups
- The enrichment history of cosmic metals
- Rotation rates, sizes, and star formation efficiencies of a representative population of simulated disc galaxies
- Chandra and XMM-Newton Detection of Large-scale Diffuse X-ray Emission from the Sombrero Galaxy
- Mass Loss From Planetary Nebulae in Elliptical Galaxies
- Chandra Observations of Early-type Galaxies
Cited by in corpus (41)
- A Budget and Accounting of Metals at z~0: Results from the COS-Halos Survey
- Bimodality of low-redshift circumgalactic O VI in non-equilibrium EAGLE zoom simulations
- The alignment and shape of dark matter, stellar, and hot gas distributions in the EAGLE and cosmo-OWLS simulations
- The origin of diverse -element abundances in galaxy discs
- The gas fractions of dark matter haloes hosting simulated galaxies are governed by the feedback history of their black holes
- Chandra Survey of Nearby Highly Inclined Disc Galaxies - II: Correlation Analysis of Galactic Coronal Properties
- Consequences of Mechanical and Radiative Feedback from Black Holes in Disc Galaxy Mergers
- MAGIICAT III. Interpreting Self-Similarity of the Circumgalactic Medium with Virial Mass using MgII Absorption
- X-ray Signatures of Black Hole Feedback: Hot Galactic Atmospheres in IllustrisTNG and X-ray Observations
- The Circum-Galactic Medium of MASsive Spirals II: Probing the Nature of Hot Gaseous Halo around the Most Massive Isolated Spiral Galaxies
- The formation of hot gaseous haloes around galaxies
- Galactic Simulations of r-process Elemental Abundances
- Baryon Budget of the Hot Circumgalactic Medium of Massive Spiral Galaxies
- The impact of stellar feedback on hot gas in galaxy haloes: the Sunyaev-Zel'dovich effect and soft X-ray emission
- EAGLE and Illustris-TNG predictions for resolved eROSITA X-ray observations of the circumgalactic medium around normal galaxies
- Metal enrichment in the circumgalactic medium and Lyα haloes around quasars at z 3
- Recycled stellar ejecta as fuel for star formation and implications for the origin of the galaxy mass-metallicity relation
- Galaxy properties and the cosmic web in simulations
- Iron in galaxy groups and clusters: Confronting galaxy evolution models with a newly homogenised dataset
- Chandra Survey of Nearby Highly Inclined Disc Galaxies - III: Comparison with Hydrodynamical Simulations of Circumgalactic Coronae
- Dynamic Localised Turbulent Diffusion and its Impact on the Galactic Ecosystem
- The circumgalactic medium of high redshift galaxies
- A submillimeter galaxy illuminating its circumgalactic medium: Ly-alpha scattering in a cold, clumpy outflow
- An HST/COS legacy survey of intervening SiIII absorption in the extended gaseous halos of low-redshift galaxies
- RHAPSODY-G simulations II - Baryonic growth and metal enrichment in massive galaxy clusters
- GARROTXA Cosmological Simulations of Milky Way-sized Galaxies: General Properties, Hot Gas Distribution, and Missing Baryons
- Diffuse coronae in cosmological simulations of Milky Way-sized galaxies
- The Circum-Galactic Medium of MASsive Spirals I: Overview and a Case Study of NGC 5908
- The warm-hot circumgalactic medium around EAGLE-simulation galaxies and its detection prospects with X-ray line emission
- The Impact of Outflows driven by Active Galactic Nuclei on Metals in and around Galaxies
- Scientific Objectives of the Hot Universe Baryon Surveyor (HUBS) Mission
- Do We Detect the Galactic Feedback Material in X-ray Observations of Nearby Galaxies? - A Case Study of NGC 5866
- The Origin of the Hot Gas in the Galactic Halo: Testing Galactic Fountain Models' X-ray Emission
- Some Like It Hot: Linking Diffuse X-ray Luminosity, Baryonic Mass, and Star Formation Rate in Compact Groups of Galaxies
- An X-ray View of the Hot Circum-Galactic Medium
- Properties of the circumgalactic medium in simulations compared to observations
- C IV and He II Line Emission of Lyman Alpha Blobs: Powered by Shock Heated Gas
- Low Mass Group Environments have no Substantial Impact on the Circumgalactic Medium Metallicity
- ARCHITECTS I: Impact of subgrid physics on the simulated properties of the circumgalactic medium
- Absorption systems at as a probe of the circum galactic medium: a probabilistic approach
- Predictions for the X-ray circumgalactic medium of edge-on discs and spheroids