Gas infall and radial transport in cosmological simulations of Milky Way-mass disks
arXiv:2105.11472 · doi:10.1093/mnras/stab3251
Abstract
Observations indicate that a continuous supply of gas is needed to maintain observed star formation rates in large, disky galaxies. To fuel star formation, gas must reach the inner regions of such galaxies. Despite its crucial importance for galaxy evolution, how and where gas joins galaxies is poorly constrained observationally and is rarely explored in fully cosmological simulations. To investigate gas accretion in the vicinity of galaxies, we analyze the FIRE-2 cosmological zoom-in simulations for 4 Milky Way mass galaxies (M_halo ~ 10E12 solar masses), focusing on simulations with cosmic ray physics. We find that at z~0, gas approaches the disk with angular momentum similar to the gaseous disk edge and low radial velocities, piling-up near the edge and settling into full rotational support. Accreting gas moves predominantly parallel to the disk with small but nonzero vertical velocity components, and joins the disk largely in the outskirts as opposed to "raining" down onto the disk. Once in the disk, gas trajectories are complex, being dominated by spiral arm induced oscillations and feedback. However, time and azimuthal averages show clear but slow net radial infall with transport speeds of 1-3 km/s and net mass fluxes through the disk on the order of one solar mass per year, comparable to the star formation rates of the galaxies and decreasing towards galactic center as gas is sunk into star formation. These rates are slightly higher in simulations without cosmic rays (1-7 km/s, ~4-5 solar masses per year). We find overall consistency of our results with observational constraints and discuss prospects of future observations of gas flows in and around galaxies.
22 pages, 15 figures, published by MNRAS
References in corpus (31)
- The NumPy array: a structure for efficient numerical computation
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- xCOLD GASS: the complete IRAM-30m legacy survey of molecular gas for galaxy evolution studies
- 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
- Characterising the Gravitational Instability in Cooling Accretion Discs
- Neutral hydrogen in galaxy halos at the peak of the cosmic star formation history
- The Structure and Dynamical Evolution of the Stellar Disk of a Simulated Milky Way-Mass Galaxy
- Seeding the formation of cold gaseous clouds in Milky Way size halos
- Characterizing mass, momentum, energy and metal outflow rates of multi-phase galactic winds in the FIRE-2 cosmological simulations
- Virialization of the inner CGM in the FIRE simulations and implications for galaxy discs, star formation and feedback
- MusE GAs FLOw and Wind (MEGAFLOW) II. A study of gas accretion around star-forming galaxies with background quasars
- Quasars Probing Galaxies: I. Signatures of Gas Accretion at Redshift Approximately 0.2
- Testing Physical Models for Cosmic Ray Transport Coefficients on Galactic Scales: Self-Confinement and Extrinsic Turbulence at GeV Energies
- Kinematics of Circumgalactic Gas: Feeding Galaxies and Feedback
- The Formation Times and Building Blocks of Milky Way-mass Galaxies in the FIRE Simulations
- Cosmic-Ray Driven Outflows to Mpc Scales from Galaxies
- Effects of Different Cosmic Ray Transport Models on Galaxy Formation
- Revisiting long-standing puzzles of the Milky Way: the Sun and its vicinity as typical outer disk chemical evolution
- Nature of the Absorbing Gas associated with a Galaxy Group at z~0.4
- 3-D gas-phase elemental abundances across the formation histories of Milky Way-mass galaxies in the FIRE simulations: initial conditions for chemical tagging
- A measurement of the z = 0 UV background from H fluorescence
- How Gas Accretion Feeds Galactic Disks
- Pressure balance in the multiphase ISM of cosmologically simulated disk galaxies
- Evolution of giant molecular clouds across cosmic time
- HST/COS Observations of Ionized Gas Accretion at the Disk-halo Interface of M33
- In search of cool flow accretion onto galaxies where does the disk gas end?
- All-sky census of Galactic high-latitude molecular intermediate-velocity clouds
- A Synoptic View of the Magellanic Clouds: VMC, Gaia, and Beyond
Cited by in corpus (36)
- FIRE-3: Updated Stellar Evolution Models, Yields, & Microphysics and Fitting Functions for Applications in Galaxy Simulations
- FIREbox: Simulating galaxies at high dynamic range in a cosmological volume
- The specific angular momentum of disc galaxies and its connection with galaxy morphology, bar structure and disc gravitational instability
- What Causes The Formation of Disks and End of Bursty Star Formation?
- Hot-mode accretion and the physics of thin-disk galaxy formation
- Standard Self-Confinement and Extrinsic Turbulence Models for Cosmic Ray Transport are Fundamentally Incompatible with Observations
- Disk settling and dynamical heating: histories of Milky Way-mass stellar disks across cosmic time in the FIRE simulations
- The evolution of turbulent galactic discs: gravitational instability, feedback and accretion
- Intermediate- and high-velocity clouds in the Milky Way II: evidence for a Galactic fountain with collimated outflows and diffuse inflows
- The Radcliffe Wave is Oscillating
- The impact of cosmic rays on dynamical balance and disk-halo interaction in Lstar disk galaxies
- The Origin of Exponential Star-forming Disks
- Gas Accretion Can Drive Turbulence in Galaxies
- The Gas-phase Metallicity Profiles of Star-forming Galaxies in the Modified Accretion Disk Framework
- Spiral Arms are Metal Freeways: Azimuthal Gas-Phase Metallicity Variations in Simulated Cosmological Zoom-in Flocculent Disks
- The interplay between feedback, accretion, transport and winds in setting gas-phase metal distribution in galaxies
- GASKAP Pilot Survey Science II: ASKAP Zoom Observations of Galactic 21-cm Absorption
- Realistic HI scale heights of Milky Way-mass galaxies in the FIREbox cosmological volume
- Fountain-driven gas accretion feeding star formation over the disc of NGC 2403
- Gas metallicity distributions in SDSS-IV MaNGA galaxies: what drives gradients and local trends?
- Kinematic analysis of the super-extended HI disk of the nearby spiral galaxy M83
- How well do local relations predict gas-phase metallicity gradients? Results from SDSS-IV MaNGA
- Stress-Testing Cosmic Ray Physics: The Impact of Cosmic Rays on the Surviving Disk of Ram Pressure Stripped Galaxies
- HI within and around observed and simulated galaxy discs -- Comparing MeerKAT observations with mock data from TNG50 and FIRE-2
- The Similar Signatures of Coplanar Gas Inflow and Disk Warps in Galactic Gas Kinematic Maps
- Seeking Self-Regulating Simulations of Idealized Milky Way-Like Galaxies
- Understanding the Baryon Cycle: Fueling Star Formation via Inflows in Milky Way-like Galaxies
- Gas accretion onto galaxies and Kelvin-Helmholtz turbulence
- Cosmic quenching and scaling laws for the evolution of supermassive black holes and host galaxies
- You Are What You Eat: The Circumgalactic Medium Around BreakBRD Galaxies has Low Mass and Angular Momentum
- Emergence of red, star-forming galaxies (red misfits) in a ΛCDM universe
- Constraining cosmic ray transport models using circumgalactic medium properties and observables
- Hot accretion onto spiral galaxies: the origin of extended and warped HI discs
- Radial Transport in High-Redshift Disk Galaxies Dominated by Inflowing Streams
- Predictions for the X-ray circumgalactic medium of edge-on discs and spheroids
- Mainly on the Plane: Observing the Extended, Ionized Disks of Milky Way Analogs in IllustrisTNG