Radiative Stellar Feedback in Galaxy Formation: Methods and Physics
arXiv:1811.12462 · doi:10.1093/mnras/stz3129
Abstract
Radiative feedback (RFB) from stars plays a key role in galaxies, but remains poorly-understood. We explore this using high-resolution, multi-frequency radiation-hydrodynamics (RHD) simulations from the Feedback In Realistic Environments (FIRE) project. We study ultra-faint dwarf through Milky Way mass scales, including H+He photo-ionization; photo-electric, Lyman Werner, Compton, and dust heating; and single+multiple scattering radiation pressure (RP). We compare distinct numerical algorithms: ray-based LEBRON (exact when optically-thin) and moments-based M1 (exact when optically-thick). The most important RFB channels on galaxy scales are photo-ionization heating and single-scattering RP: in all galaxies, most ionizing/far-UV luminosity (~1/2 of lifetime-integrated bolometric) is absorbed. In dwarfs, the most important effect is photo-ionization heating from the UV background suppressing accretion. In MW-mass galaxies, meta-galactic backgrounds have negligible effects; but local photo-ionization and single-scattering RP contribute to regulating the galactic star formation efficiency and lowering central densities. Without some RFB (or other 'rapid' FB), resolved GMCs convert too-efficiently into stars, making galaxies dominated by hyper-dense, bound star clusters. This makes star formation more violent and 'bursty' when SNe explode in these hyper-clustered objects: thus, including RFB 'smoothes' SFHs. These conclusions are robust to RHD methods, but M1 produces somewhat stronger effects. Like in previous FIRE simulations, IR multiple-scattering is rare (negligible in dwarfs, ~10% of RP in massive galaxies): absorption occurs primarily in 'normal' GMCs with A_v~1.
28 pages, 14 figures. Updated to match published MNRAS version
References in corpus (46)
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The ACS Virgo Cluster Survey XV. The Formation Efficiencies of Globular Clusters in Early-Type Galaxies: The Effects of Mass and Environment
- The Effects of Radiative Transfer on Low-Mass Star Formation
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- Inefficient star formation through turbulence, magnetic fields and feedback
- On the interplay between star formation and feedback in galaxy formation simulations
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- Be it therefore resolved: Cosmological Simulations of Dwarf Galaxies with Extreme Resolution
- But What About... Cosmic Rays, Magnetic Fields, Conduction, & Viscosity in Galaxy Formation
- The origin of ultra diffuse galaxies: stellar feedback and quenching
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- Clustered Supernovae Drive Powerful Galactic Winds After Super-Bubble Breakout
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- Resonant Drag Instabilities in protoplanetary disks: the streaming instability and new, faster-growing instabilities
- An Unstable Truth: How Massive Stars get their Mass
- Quenching star formation with quasar outflows launched by trapped IR radiation
- Galaxies that Shine: radiation-hydrodynamical simulations of disk galaxies
- AREPO-RT: Radiation hydrodynamics on a moving mesh
- The physics of Lyman-alpha escape from high-redshift galaxies
- An Algorithm for Radiation Magnetohydrodynamics Based on Solving the Time-dependent Transfer Equation
- Predicting the binary black hole population of the Milky Way with cosmological simulations
- The ISM in spiral galaxies: can cooling in spiral shocks produce molecular clouds?
- How galaxies form stars: the connection between local and global star formation in galaxy simulations
- Numerical Simulations of Turbulent, Molecular Clouds Regulated by Radiation Feedback Forces I: Star Formation Rate and Efficiency
- The Effect of the Interstellar Model on Star Formation Properties in Galactic Disks
- Radiation Feedback in ULIRGS: Are Photons Movers and Shakers?
- Cloud and Star Formation in Disk Galaxy Models with Feedback
- Transverse Sizes of CIV Absorption Systems Measured from Multiple QSO Sightlines
- On The Nature of Variations in the Measured Star Formation Efficiency of Molecular Clouds
- The natural emergence of the correlation between H2 and star formation rate surface densities in galaxy simulations
- Impact of Lyman alpha pressure on metal-poor dwarf galaxies
- Modeling UV Radiation Feedback from Massive Stars: I. Implementation of Adaptive Ray Tracing Method and Tests
- Lyman-alpha radiation hydrodynamics of galactic winds before cosmic reionization
- Discrete Effects in Stellar Feedback: Individual Supernovae, Hypernovae, and IMF Sampling in Dwarf Galaxies
- Evolution of giant molecular clouds across cosmic time
- Ubiquitous Instabilities of Dust Moving in Magnetized Gas
- Metal Mixing and Ejection in Dwarf Galaxies is Dependent on Nucleosynthetic Source
- The Maximum Stellar Surface Density Due to the Failure of Stellar Feedback
- Momentum-driven Winds from Radiatively Efficient Black Hole Accretion and Their Impact on Galaxies
- Numerical Problems in Coupling Photon Momentum (Radiation Pressure) to Gas
- A Simple Non-equilibrium Feedback Model for Galaxy-Scale Star Formation: Delayed Feedback and SFR Scatter
- Non-linear Evolution of Rayleigh-Taylor Instability in a Radiation Supported Atmosphere
- Three-Dimensional Simulations of Inflows Irradiated by a Precessing Accretion Disk in Active Galactic Nuclei: Formation of Outflows
- Discrete diffusion Lyman-alpha radiative transfer
- The effects of metallicity and cooling physics on fragmentation: implications on direct-collapse black hole formation
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- Cool Outflows in Galaxies and their Implications
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- STARFORGE: Toward a comprehensive numerical model of star cluster formation and feedback
- Cosmic ray feedback in the FIRE simulations: constraining cosmic ray propagation with GeV gamma ray emission
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- Deep into the structure of the first galaxies: SERRA views
- FIRE-3: Updated Stellar Evolution Models, Yields, & Microphysics and Fitting Functions for Applications in Galaxy Simulations
- Public data release of the FIRE-2 cosmological zoom-in simulations of galaxy formation
- No missing photons for reionization: moderate ionizing photon escape fractions from the FIRE-2 simulations
- Testing Physical Models for Cosmic Ray Transport Coefficients on Galactic Scales: Self-Confinement and Extrinsic Turbulence at GeV Energies
- Self-consistent proto-globular cluster formation in cosmological simulations of high-redshift galaxies
- A survey of high- galaxies: SERRA simulations
- Efficient early stellar feedback can suppress galactic outflows by reducing supernova clustering
- What Causes The Formation of Disks and End of Bursty Star Formation?
- COSMOS2020: The cosmic evolution of the stellar-to-halo mass relation for central and satellite galaxies up to z~5
- A model for the formation of stellar associations and clusters from giant molecular clouds
- Cosmic-Ray Driven Outflows to Mpc Scales from Galaxies
- Rapid disc settling and the transition from bursty to steady star formation in Milky Way-mass galaxies
- Effects of Different Cosmic Ray Transport Models on Galaxy Formation
- A Framework for Multiphase Galactic Wind Launching using TIGRESS
- The rapid onset of stellar bars in the baryon-dominated centers of disk galaxies
- Introducing SPHINX-MHD: The Impact of Primordial Magnetic Fields on the First Galaxies, Reionization, and the Global 21cm Signal
- First Predicted Cosmic Ray Spectra, Primary-to-Secondary Ratios, and Ionization Rates from MHD Galaxy Formation Simulations
- Cluster assembly and the origin of mass segregation in the STARFORGE simulations
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- Standard Self-Confinement and Extrinsic Turbulence Models for Cosmic Ray Transport are Fundamentally Incompatible with Observations
- Photochemistry and Heating/Cooling of the Multiphase Interstellar Medium with UV Radiative Transfer for Magnetohydrodynamic Simulations
- Pressure balance in the multiphase ISM of cosmologically simulated disk galaxies
- Great Balls of FIRE I: The formation of star clusters across cosmic time in a Milky Way-mass galaxy
- The challenge of simulating the star cluster population of dwarf galaxies with resolved interstellar medium
- RIGEL: Simulating dwarf galaxies at solar mass resolution with radiative transfer and feedback from individual massive stars
- The Circumgalactic Medium of Milky Way-like Galaxies in the TNG50 Simulation -- II: Cold, Dense Gas Clouds and High-Velocity Cloud Analogs
- The impact of cosmic rays on dynamical balance and disk-halo interaction in Lstar disk galaxies
- The effects of LMC-mass environments on their dwarf satellite galaxies in the FIRE simulations
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- Cataloging Accreted Stars within Gaia DR2 using Deep Learning
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- Does God play dice with star clusters?
- Hyper-Eddington Black Hole Growth in Star-Forming Molecular Clouds and Galactic Nuclei: Can It Happen?
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- The Anatomy of a Star-Forming Galaxy II: the role of FUV heating via dust
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- The THESAN-ZOOM project: Star-formation efficiencies in high-redshift galaxies
- Feedback-regulated Seed Black Hole Growth in Star-Forming Molecular Clouds and Galactic Nuclei
- Dust-Evacuated Zones Near Massive Stars: Consequences of Dust Dynamics on Star-forming Regions
- Diverse dark matter profiles in FIRE dwarfs: black holes, cosmic rays and the cusp-core enigma
- A Simple Sub-Grid Model For Cosmic Ray Effects on Galactic Scales
- A two-phase model of galaxy formation: III. The formation of globular clusters
- ALMAGAL V. Relations between the core populations and the parent clump physical properties
- AGN anisotropic radiative feedback set by black hole spin
- Physical Processes Behind the Co-Evolution of Halos, Galaxies and Supermassive Black Holes in the IllustrisTNG Simulation
- Predicting Localized Primordial Star Formation with Deep Convolutional Neural Networks
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- The In Situ Growth of Stellar-mass "Light" Seed Black Holes in Nuclear Star Clusters
- Ashes of FIRE: Modeling Dust Grain Size Evolution in the Local Group with FIRE
- Early Stages of Dusty Tori: The First Infrared Spectra from a Highly Multiscale Quasar Simulation
- Two-phase formation of galaxies: the coevolution between galaxies and dark matter halos
- Resolved Neutral Outflow from a Lensed Dusty Star Forming Galaxy at z=2.09
- Constraining cosmic ray transport models using circumgalactic medium properties and observables
- Non-ideal MHD and protostellar feedback effects on disc formation and evolution in numerical simulations of star cluster formation
- Controlled Experiments on Dark-Matter Halo Structure and Galaxy Morphology I: What Sets Galaxy Sizes?
- CROCODILE-DWARF: Assembly and Kinematics of Field Dwarf Galaxies with GADGET4-OSAKA
- Exploring supermassive black hole physics and galaxy quenching across halo mass in FIRE cosmological zoom simulations