Figuring Out Gas & Galaxies In Enzo (FOGGIE) VI: The Circumgalactic Medium of Galaxies is Supported in an Emergent, Non-Hydrostatic Equilibrium
arXiv:2206.09925 · doi:10.3847/1538-4357/acbb06
Abstract
The circumgalactic medium (CGM) is often assumed to exist in or near hydrostatic equilibrium with the regulation of accretion and the effects of feedback treated as perturbations to a stable balance between gravity and thermal pressure. We investigate global hydrostatic equilibrium in the CGM using four highly-resolved galaxies from the Figuring Out Gas & Galaxies In Enzo (FOGGIE) project. The FOGGIE simulations were specifically targeted at fine spatial and mass resolution in the CGM ( kpc and ). We develop a new analysis framework that calculates the forces provided by thermal pressure gradients, turbulent pressure gradients, ram pressure gradients of large-scale radial bulk flows, centrifugal rotation, and gravity acting on the gas in the CGM. Thermal and turbulent pressure gradients vary strongly on scales of kpc throughout the CGM. Thermal pressure gradients provide the main supporting force only beyond , or kpc at . Within , turbulent pressure gradients and rotational support provide stronger forces than thermal pressure. More generally, we find that global equilibrium models are neither appropriate nor predictive for the small scales probed by absorption line observations of the CGM. Local conditions generally cannot be derived by assuming a global equilibrium, but an emergent global equilibrium balancing radially inward and outward forces is obtained when averaging over the non-equilibrium local conditions on large scales in space and time. Approximate hydrostatic equilibrium holds only at large distances from galaxies even when averaging out small-scale variations.
36 pages, 24 figures. Accepted to ApJ. See https://foggie.science/cgm_forces.html for animated Figures 6 and 7
References in corpus (39)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The Circumgalactic Medium
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Moving mesh cosmology: tracing cosmological gas accretion
- Grackle: a Chemistry and Cooling Library for Astrophysics
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- The COS-Dwarfs Survey: The Carbon Reservoir Around sub-L* Galaxies
- Regulation of star formation in giant galaxies by precipitation, feedback, and conduction
- The COS-Halos Survey: Origins of the Highly Ionized Circumgalactic Medium of Star-Forming Galaxies
- Multiphase Gas and the Fractal Nature of Radiative Turbulent Mixing Layers
- The Structure of Multiphase Galactic Winds
- Comparing Numerical Methods for Isothermal Magnetized Supersonic Turbulence
- Feedback from Active Galactic Nuclei in Galaxy Groups
- Baryon Cycles in the Biggest Galaxies
- Evidence for a Massive, Extended Circumgalactic Medium Around the Andromeda Galaxy
- Survival and mass growth of cold gas in a turbulent, multiphase medium
- Cooling flow solutions for the circumgalactic medium
- The Impact of Cosmic Rays on Thermal Instability in the Circumgalactic Medium
- Radiative Mixing Layers: Insights from Turbulent Combustion
- COS-Burst: Observations of the Impact of Starburst-Driven Winds on the Properties of the Circum-Galactic Medium
- Project AMIGA: The Circumgalactic Medium of Andromeda
- The Clustering of MgII Absorption Systems at z=0.5 and Detection of Cold Gas in Massive Halos
- The Properties of the Circumgalactic Medium in Red and Blue Galaxies: Results from the COS-GASS+COS-Halos Surveys
- The Cosmic Ultraviolet Baryon Survey (CUBS) I. Overview and the diverse environments of Lyman limit systems at z<1
- Hot Extended Galaxy Halos Around Local L* Galaxies From Sunyaev-Zeldovich Measurements
- The COS Absorption Survey of Baryon Harbors: Unveiling the Physical Conditions of Circumgalactic Gas through Multiphase Bayesian Ionization Modeling
- Figuring Out Gas & Galaxies In Enzo (FOGGIE). IV. The Stochasticity of Ram Pressure Stripping in Galactic Halos
- Circumgalactic Pressure Profiles Indicate Precipitation-Limited Atmospheres for
- Figuring Out Gas & Galaxies in Enzo (FOGGIE). III. The Mocky Way: Investigating Biases in Observing the Milky Way's Circumgalactic Medium
- Clues to the nature of high-redshift OVI absorption systems from their (lack of) small-scale structure
- Radiative turbulent mixing layers at high Mach numbers
- As a matter of dynamical range -- scale dependent energy dynamics in MHD turbulence
- The warm-hot, extended, massive circumgalactic medium of NGC 3221: an XMM-Newton discovery
- Exploring the Milky Way Circumgalactic Medium in a Cosmological Context with a Semi-Analytic Model
- Figuring Out Gas & Galaxies In Enzo (FOGGIE) V: The Virial Temperature Does Not Describe Gas in a Virialized Galaxy Halo
- Clumpiness of Observed and Simulated Cold Circumgalactic Gas
Cited by in corpus (10)
- Regulation of Star Formation by a Hot Circumgalactic Medium
- The warm-hot circumgalactic medium of the Milky Way as seen by eROSITA
- Boosting galactic outflows with enhanced resolution
- Entrainment of Hot Gas into Cold Streams: The Origin of Excessive Star-formation Rates at Cosmic Noon
- Searching for HI around MHONGOOSE Galaxies via Spectral Stacking
- On the Origin of High-velocity Clouds in the Galaxy
- Seeking Self-Regulating Simulations of Idealized Milky Way-Like Galaxies
- 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
- The Thermodynamic and Kinematic Evolution of Circumgalactic Gas around in the IllustrisTNG model