Entrainment of Hot Gas into Cold Streams: The Origin of Excessive Star-formation Rates at Cosmic Noon
arXiv:2403.00912 · doi:10.1093/mnras/stae1673
Abstract
We explore the evolution of cold streams from the cosmic web that feed galaxies through their shock-heated circumgalactic medium (CGM) at cosmic noon, . In addition to the hydrodynamical instabilities and radiative cooling that we have incorporated in earlier works, we embed the stream and the hot CGM in the gravitational potential of the host dark-matter halo, deriving equilibrium profiles for both. Self-gravity within the stream is tentatively ignored. We find that the cold streams gradually entrain a large mass of initially hot CGM gas that cools in the mixing layer and condenses onto the stream. This entrainment, combined with the acceleration down the gravitational potential well, typically triples the inward cold inflow rate into the central galaxy, compared to the original rate at the virial radius, which makes the entrained gas the dominant source of gas supply to the galaxy. The potential sources for the hot gas to be entrained are recycled enriched gas that has been previously ejected from the galaxy, and fresh virial-shock-heated gas that has accumulated in the CGM. This can naturally elevate the star formation rate in the galaxy by a factor of compared to the gas accretion rate onto the halo, thus explaining the otherwise puzzling observed excess of star formation at cosmic noon. When accounting for self-shielding of dense gas from the UV background, we find that the energy radiated from the streams, originating predominantly from the cooling of the entrained gas, is consistent with observed Lyman- blobs around galaxies.
27 pages, 11 figures, accepted in MNRAS
References in corpus (43)
- Array Programming with NumPy
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- Moving mesh cosmology: tracing cosmological gas accretion
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- Four phases of angular-momentum buildup in high-z galaxies: from cosmic-web streams through an extended ring to disc and bulge
- Multiphase Gas and the Fractal Nature of Radiative Turbulent Mixing Layers
- A New Census of the 0.2< z <3.0 Universe, Part II: The Star-Forming Sequence
- Efficiency of gas cooling and accretion at the disc-corona interface
- Virialization of the inner CGM in the FIRE simulations and implications for galaxy discs, star formation and feedback
- Interaction of a cold cloud with a hot wind: the regimes of cloud growth and destruction and the impact of magnetic fields
- Merger Rates of Dark-Matter Haloes
- Quasars Probing Quasars VII. The Pinnacle of the Cool Circumgalactic Medium Surrounds Massive z~2 Galaxies
- Inspiraling Halo Accretion Mapped in Lyman- Emission around a Quasar
- Survival and mass growth of cold gas in a turbulent, multiphase medium
- Spatially Resolved Star Formation and Inside-out Quenching in the TNG50 Simulation and 3D-HST Observations
- Cooling flow solutions for the circumgalactic medium
- Radiative Mixing Layers: Insights from Turbulent Combustion
- Three Lyman-alpha emitting filaments converging to a massive galaxy group at z=2.91: discussing the case for cold gas infall
- Reconciling the observed star-forming sequence with the observed stellar mass function
- A Keck/DEIMOS Spectroscopy of Lyman Alpha Blobs at Redshift z=3.1
- The evolution of the star forming sequence in hierarchical galaxy formation models
- Resolving shocks and filaments in galaxy formation simulations: effects on gas properties and star formation in the circumgalactic medium
- Witnessing galaxy assembly in an extended z~3 structure
- Shock-multicloud interactions in galactic outflows -- II. Radiative fractal clouds and cold gas thermodynamics
- Revealing the Dark Threads of the Cosmic Web
- Chemodynamics of Green Pea galaxies -- I. Outflows and turbulence driving the escape of ionising photons and chemical enrichment
- The evolution of turbulent galactic discs: gravitational instability, feedback and accretion
- Cloudy with A Chance of Rain: Accretion Braking of Cold Clouds
- Ly Blobs from Cold Streams Undergoing Kelvin-Helmholtz Instabilities
- Inspiraling streams of enriched gas observed around a massive galaxy 11 billion years ago
- Figuring Out Gas & Galaxies In Enzo (FOGGIE) VI: The Circumgalactic Medium of Galaxies is Supported in an Emergent, Non-Hydrostatic Equilibrium
- Thermal Instabilities and Shattering in the High-Redshift WHIM: Convergence Criteria and Implications for Low-Metallicity Strong HI Absorbers
- A cosmic stream of atomic carbon gas connected to a massive radio galaxy at redshift 3.8
- Coronal cooling as a result of mixing by the nonlinear Kelvin--Helmholtz instability
- The hydrodynamic stability of gaseous cosmic filaments
- Figuring Out Gas & Galaxies In Enzo (FOGGIE) V: The Virial Temperature Does Not Describe Gas in a Virialized Galaxy Halo
- The Launching of Cold Clouds by Galaxy Outflows V: The Role of Anisotropic Thermal Conduction
- Stability and Ly emission of Cold Stream in the Circumgalactic Medium: impact of magnetic fields and thermal conduction
- Evolution of cold streams in hot gaseous halos
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- On the origin of compressive turbulence in protoclumps in high redshift disks
- Fading in the Flow: Suppression of cold gas growth in expanding galactic outflows
- Magnetising galaxies with cold inflows
- Statistical Properties of Cold Streams In Massive Star-Forming Halos in TNG50
- Radial Transport in High-Redshift Disk Galaxies Dominated by Inflowing Streams
- Cold vs. Hot Gas Accretion and Angular Momentum in FIRE Simulations: From Halo to Galaxy Scales