Seeking Self-Regulating Simulations of Idealized Milky Way-Like Galaxies
arXiv:2206.04706 · doi:10.3847/1538-4357/accbb7
Abstract
Precipitation is potentially a mechanism through which the circumgalactic medium (CGM) can regulate a galaxy's star formation. Here we present idealized simulations of isolated Milky Way-like galaxies intended to examine the ability of galaxies to self-regulate their star formation, particularly via precipitation. Our simulations are the first CGM-focused idealized models to include stellar feedback due to the explicit formation of stars. We also examine the impact of rotation in the CGM. Using six simulations, we explore variations in the initial CGM ratio and rotation profile. Those variations affect the amount of star formation and gas accretion within the galactic disk. Our simulations are sensitive to their initial conditions, requiring us to gradually increase the efficiency of stellar feedback to avoid destroying the CGM before its gas can be accreted. Despite this gradual increase, the resulting outflows still evacuate large, hot cavities within the CGM and even beyond . Some of the CGM gas avoids interacting with the cavities and is able to feed the disk along its midplane, but the cooling of feedback-heated gas far from the midplane is too slow to supply the disk with additional gas. Our simulations illustrate the importance of physical mechanisms in the outer CGM and IGM for star formation regulation in Milky Way-scale halos.
28 pages, 13 figures. Submitted to the Astrophysical Journal
References in corpus (28)
- Array Programming with NumPy
- The Circumgalactic Medium
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- Grackle: a Chemistry and Cooling Library for Astrophysics
- The Main Sequence of star-forming galaxies across cosmic times
- The COS-Halos Survey: Metallicities in the Low-Redshift Circumgalactic Medium
- An Entropy Threshold for Strong H-alpha and Radio Emission in the Cores of Galaxy Clusters
- Cooling Time, Freefall Time, and Precipitation in the Cores of ACCEPT Galaxy Clusters
- Chaotic cold accretion on to black holes in rotating atmospheres
- Baryon Cycles in the Biggest Galaxies
- Hot-mode accretion and the physics of thin-disk galaxy formation
- Snap, Crackle, Pop: sub-grid supernova feedback in AMR simulations of disk galaxies
- Conduction and the Star-Formation Threshold in Brightest Cluster Galaxies
- Radial motions and radial gas flows in local spiral galaxies
- Slicing the cool circumgalactic medium along the major-axis of a star-forming galaxy at
- The role of galactic dynamics in shaping the physical properties of giant molecular clouds in Milky Way-like galaxies
- How Gas Accretion Feeds Galactic Disks
- The anatomy of a star-forming galaxy: Pressure-driven regulation of star formation in simulated galaxies
- Predictions for anisotropic X-ray signatures in the circumgalactic medium: imprints of supermassive black hole driven outflows
- The Angular Momentum of the Circumgalactic Medium in the TNG100 Simulation
- Circumgalactic Pressure Profiles Indicate Precipitation-Limited Atmospheres for
- Figuring Out Gas & Galaxies In Enzo (FOGGIE) VI: The Circumgalactic Medium of Galaxies is Supported in an Emergent, Non-Hydrostatic Equilibrium
- Observational Constraints on the Multiphase Nature of Outflows Using Large Spectroscopic Surveys at 0
- A Graphical Interpretation of Circumgalactic Precipitation
- Effects of Varying Mass Inflows on Star Formation in Nuclear Rings of Barred Galaxies
- How Metals Are Transported In And Out Of A Galactic Disk: Dependence On The Hydrodynamic Schemes In Numerical Simulations
- Detection of the self-regulation of star formation in galaxy discs
- Properties of the Hot Ambient Medium of Early-type Galaxies Hosting Powerful Radio Sources