Exploring the Physical Properties of the Cool Circumgalactic Medium with a Semi-Analytic Model
arXiv:1810.11771 · doi:10.1093/mnras/stz839
Abstract
We develop a semi-analytic model to explore the physical properties of cool pressure-confined circumgalactic clouds with mass ranging from to in a hot diffuse halo. We consider physical effects that control the motion and mass loss of the clouds, and estimate the lifetime and the observed properties of individual cool gas clouds inferred from the CLOUDY simulation. Our results show that the cool pressure-confined gas clouds have physical properties consistent with absorption line systems with neutral hydrogen column densities such as strong metal absorbers, sub-DLAs, and DLAs. The cool circumgalactic clouds are transient due to evaporation and recycling and therefore a constant replenishment is needed to maintain the cool CGM. We further model the ensemble properties of the cool CGM with clouds originated from outflows, inflows, or/and in-situ formation with a range of initial cloud mass function and velocity distribution. We find that only with a certain combination of parameters, an outflow model can broadly reproduce three cool gas properties around star-forming galaxies simultaneously: the spatial distribution, down-the-barrel outflow absorption, and gas velocity dispersion. Both a constant insitu model and gas inflow model can reproduce the observed covering fractions of high gas around passive galaxies but they fail to reproduce sufficient number of low systems. The limitations and the failures of the current models are discussed. Our results illustrate that semi-analytic modeling is a promising tool to understand the physics of the cool CGM which is usually unresolved by state-of-the-art cosmological hydrodynamic simulations.
18 pages, 12 figures, Accepted for publication in MNRAS
References in corpus (26)
- The Circumgalactic Medium
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- The 2013 Release of Cloudy
- eROSITA Science Book: Mapping the Structure of the Energetic Universe
- The growth and entrainment of cold gas in a hot wind
- Figuring Out Gas & Galaxies in Enzo (FOGGIE). I. Resolving Simulated Circumgalactic Absorption at 2 < z < 2.5
- Magnetized Gas Clouds can Survive Acceleration by a Hot Wind
- Cosmological simulations of the circumgalactic medium with 1 kpc resolution: enhanced HI column densities
- The Impact of Enhanced Halo Resolution on the Simulated Circumgalactic Medium
- The abundance, distribution, and physical nature of highly ionized oxygen OVI, OVII, and OVIII in IllustrisTNG
- Characterizing Circumgalactic Gas around Massive Ellipticals at z~0.4 - II. Physical Properties and Elemental Abundances
- Zooming in on accretion - II. Cold Circumgalactic Gas Simulated with a super-Lagrangian Refinement Scheme
- The circumgalactic medium of eBOSS emission line galaxies: signatures of galactic outflows in gas distribution and kinematics
- The physics of multiphase gas flows: fragmentation of a radiatively cooling gas cloud in a hot wind
- On the HI content, dust-to-gas ratio and nature of MgII absorbers
- The properties of the cool circumgalactic gas probed with the SDSS, WISE and GALEX surveys
- Deviations from hydrostatic equilibrium in the circumgalactic medium: spinning hot haloes and accelerating flows
- On the model of the circumgalactic mist: the implications of cloud sizes in galactic winds and halos
- Mg II absorbers: metallicity evolution and cloud morphology
- Does circumgalactic OVI trace low-pressure gas beyond the accretion shock? Clues from HI and low-ion absorption, line kinematics, and dust extinction
- Fast Winds Drive Slow Shells: A Model for the Circumgalactic Medium as Galactic Wind-Driven Bubbles
- Circumgalactic Oxygen Absorption and Feedback
- Dust in the Wind: Composition and Kinematics of Galaxy Outflows at the Peak Epoch of Star Formation
- Massive, Absorption-selected Galaxies at Intermediate Redshifts
- Probing the Anisotropy of the Milky Way Gaseous Halo-II: sightline toward Mrk509
- CGM properties in VELA and NIHAO simulations; the OVI ionization mechanism: dependence on redshift, halo mass and radius
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- The low density and magnetization of a massive galaxy halo exposed by a fast radio burst
- Resolving small-scale cold circumgalactic gas in TNG50
- The Co-Evolution of Galaxies and the Cool Circumgalactic Medium Probed with the SDSS and DESI Legacy Imaging Surveys
- First results from SMAUG: The need for preventative stellar feedback and improved baryon cycling in semi-analytic models of galaxy formation
- The Red Dead Redemption Survey of Circumgalactic Gas About Massive Galaxies. I. Mass and Metallicity of the Cool Phase
- Constraining Magnetic Fields in the Circumgalactic Medium
- Inspiraling streams of enriched gas observed around a massive galaxy 11 billion years ago
- Cool circumgalactic gas of passive galaxies from cosmological inflow
- A New Model For Including Galactic Winds in Simulations of Galaxy Formation I: Introducing the Physically Evolved Winds (PhEW) Model
- Most of the cool CGM of star-forming galaxies is not produced by supernova feedback
- An emission map of the disk-circumgalactic medium transition in starburst IRAS 08339+6517
- Shattering as a source of small grains in the circum-galactic medium
- Revealing the Gas Recycling in the Circumgalactic Medium (CGM) Utilizing a Luminous Ly Nebula Around a Type-II Quasar at z=2.6 with the Keck Cosmic Web Imager (KCWI)
- Upper Limits on the Mass of Cool Gas in the Circumgalactic Medium of Dwarf Galaxies
- Introducing the Descriptive Parametric Model: Gaseous Profiles for Galaxies, Groups, and Clusters
- Kinematics of MgII Absorbers from the Redshift-space Distortion Around Massive Quiescent Galaxies
- Misty, patchy, and turbulent: constraining the cool circumgalactic medium with mCC
- Modelling intergalactic low ionisation metal absorption line systems near the epoch of reionization
- Resolving circumgalactic gas flows around a z3.6 quasar using MUSE and ALMA