Variable interstellar radiation fields in simulated dwarf galaxies: supernovae versus photoelectric heating
arXiv:1701.08779 · doi:10.1093/mnras/stx1773
Abstract
We present high-resolution hydrodynamical simulations of isolated dwarf galaxies including self-gravity, non-equilibrium cooling and chemistry, interstellar radiation fields (IRSF) and shielding, star formation, and stellar feedback. This includes spatially and temporally varying photoelectric (PE) heating, photoionization, resolved supernova (SN) blast waves and metal enrichment. A new flexible method to sample the stellar initial mass function allows us to follow the contribution to the ISRF, the metal output and the SN delay times of individual massive stars. We find that SNe play the dominant role in regulating the global star formation rate, shaping the multi-phase interstellar medium (ISM) and driving galactic outflows. Outflow rates (with mass-loading factors of a few) and hot gas fractions of the ISM increase with the number of SNe exploding in low-density environments where radiative energy losses are low. While PE heating alone can suppress star formation slightly more (a factor of a few) than SNe alone can do, it is unable to drive outflows and reproduce the multi-phase ISM that emerges naturally when SNe are included. These results are in conflict with recent results of Forbes et al. who concluded that PE heating is the dominant process suppressing star formation in dwarfs, about an order of magnitude more efficient than SNe. Potential origins for this discrepancy are discussed. In the absence of SNe and photoionization (mechanisms to disperse dense clouds), the impact of PE heating is highly overestimated owing to the (unrealistic) proximity of dense gas to the radiation sources. This leads to a substantial boost of the infrared continuum emission from the UV-irradiated dust and a far infrared line-to-continuum ratio too low compared to observations. Though sub-dominant in regulating star formation, the ISRF controls the abundance of molecular hydrogen via photodissociation.
submitted, comments welcome
References in corpus (21)
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Theoretical Challenges in Galaxy Formation
- The 2013 Release of Cloudy
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- Grackle: a Chemistry and Cooling Library for Astrophysics
- Inviscid SPH
- Simulating the formation of molecular clouds. I. Slow formation by gravitational collapse from static initial conditions
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- The Herschel Dwarf Galaxy Survey: I. Properties of the low-metallicity ISM from PACS spectroscopy
- FIGGS: Faint Irregular Galaxies GMRT Survey - Overview, observations and first results
- Vertical structure of a supernova-driven turbulent magnetized ISM
- Metal Cooling in Simulations of Cosmic Structure Formation
- Galaxies that Shine: radiation-hydrodynamical simulations of disk galaxies
- SLUG - Stochastically Lighting Up Galaxies. II: Quantifying the Effects of Stochasticity on Star Formation Rate Indicators
- The SILCC project --- IV. Impact of dissociating and ionising radiation on the interstellar medium and Halpha emission as a tracer of the star formation rate
- A Star Formation Law for Dwarf Irregular Galaxies
- The spatially resolved Kennicutt-Schmidt relation in the HI dominated regions of spiral and dwarf irregular galaxies
- A simple method to convert sink particles into stars
- CO-dark gas and molecular filaments in Milky Way-type galaxies - II: The temperature distribution of the gas
- SHIELD: Comparing Gas and Star Formation in Low Mass Galaxies
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- FIRE-2 Simulations: Physics versus Numerics in Galaxy Formation
- Fast and inefficient star formation due to short-lived molecular clouds and rapid feedback
- EDGE: the mass-metallicity relation as a critical test of galaxy formation physics
- SILCC-Zoom: The dynamical and chemical evolution of molecular clouds
- What FIREs Up Star Formation: the Emergence of the Kennicutt-Schmidt Law from Feedback
- Simulating an Isolated Dwarf Galaxy with Multi-Channel Feedback and Chemical Yields from Individual Stars
- Modeling the atomic-to-molecular transition in cosmological simulations of galaxy formation
- Radiative Stellar Feedback in Galaxy Formation: Methods and Physics
- SILCC VI -- Multi-phase ISM structure, stellar clustering, and outflows with supernovae, stellar winds, ionising radiation and cosmic rays
- The GRIFFIN project -- Formation of star clusters with individual massive stars in a simulated dwarf galaxy starburst
- Supernova-driven winds in simulated dwarf galaxies
- Supernova feedback in numerical simulations of galaxy formation: separating physics from numerics
- Radiative cooling rates, ion fractions, molecule abundances and line emissivities including self-shielding and both local and metagalactic radiation fields
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- Simulations of the star-forming molecular gas in an interacting M51-like galaxy
- What Causes The Formation of Disks and End of Bursty Star Formation?
- The formation of low metallicity globular clusters in dwarf galaxy mergers
- A little FABLE: exploring AGN feedback in dwarf galaxies with cosmological simulations
- Stellar Radiation is Critical for Regulating Star Formation and Driving Outflows in Low Mass Dwarf Galaxies
- LYRA I: Simulating the multi-phase ISM of a dwarf galaxy with variable energy supernovae from individual stars
- Observational constraints on stellar feedback in dwarf galaxies
- Metallicity dependence of the H/H and C/C/CO distributions in a resolved self-regulating interstellar medium
- 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
- Introducing TIGRESS-NCR: I. Co-Regulation of the Multiphase Interstellar Medium and Star Formation Rates
- SILCC VII -- Gas kinematics and multiphase outflows of the simulated ISM at high gas surface densities
- Simulating the interstellar medium of galaxies with radiative transfer, non-equilibrium thermochemistry, and dust
- Photochemistry and Heating/Cooling of the Multiphase Interstellar Medium with UV Radiative Transfer for Magnetohydrodynamic Simulations
- The most massive stars in very young star clusters with a limited mass: Evidence favours significant self-regulation in the star formation processes
- A dynamical mechanism for the origin of nuclear rings
- On the origin of surprisingly cold gas discs in galaxies at high redshift
- Discrete Effects in Stellar Feedback: Individual Supernovae, Hypernovae, and IMF Sampling in Dwarf Galaxies
- Hot phase generation by supernovae: resolution, chemistry and thermal conduction
- Roll of the Dice: A Stochastically Sampled IMF Alters the Stellar Content of Simulated Dwarf Galaxies
- Radiation-MagnetoHydrodynamics simulations of cosmic ray feedback in disc galaxies
- How runaway stars boost galactic outflows
- SIRIUS project. I. Star formation models for star-by-star simulations of star clusters and galaxy formation
- INFERNO: Galactic winds in dwarf galaxies with star-by-star simulations including runaway stars
- Dependence of on metallicity, intensity, and spatial scale in a self-regulated interstellar medium
- The challenge of simulating the star cluster population of dwarf galaxies with resolved interstellar medium
- The sensitivity of stellar feedback to IMF averaging versus IMF sampling in galaxy formation simulations
- The [CII]--SFR correlation in dwarf galaxies across cosmic time
- Bursting Bubbles: Feedback from Clustered SNe and the Trade-off Between Turbulence and Outflows
- Sub-parsec resolution cosmological simulations of star-forming clumps at high redshift with feedback of individual stars
- Code Comparison in Galaxy Scale Simulations with Resolved Supernova Feedback: Lagrangian vs. Eulerian Methods
- RIGEL: Simulating dwarf galaxies at solar mass resolution with radiative transfer and feedback from individual massive stars
- The effect of non-equilibrium metal cooling on the interstellar medium
- Arkenstone I: A Novel Method for Robustly Capturing High Specific Energy Outflows In Cosmological Simulations
- An observational test for star formation prescriptions in cosmological hydrodynamical simulations
- Formation of star clusters and enrichment by massive stars in simulations of low-metallicity galaxies with a fully sampled initial stellar mass function
- Structure and rotation of young massive star clusters in a simulated dwarf starburst
- Origin of highly -process-enhanced stars in a cosmological zoom-in simulation of a Milky Way-like galaxy
- PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions
- Simulating the atomic and molecular content of molecular clouds using probability distributions of physical parameters
- Atomic and molecular gas from the epoch of reionization down to redshift 2
- Empirically-motivated early feedback: momentum input by stellar feedback in galaxy simulations inferred through observations
- Co-evolution of Dust and Chemistry in Galaxy Simulations with a Resolved Interstellar Medium
- Does God play dice with star clusters?
- The SATIN project I: Turbulent multi-phase ISM in Milky Way simulations with SNe feedback from stellar clusters
- Star clusters forming in a low metallicity starburst -- rapid self-enrichment by (very) massive stars
- Interactions between Ultra-High-Energy Particles and Protogalactic Environments
- The origin of the [CII]-deficit in a simulated dwarf galaxies starburst
- Stellar winds and photoionization in a spiral arm
- EDGE-INFERNO: Simulating every observable star in faint dwarf galaxies and their consequences for resolved-star photometric surveys
- The role of dust destruction and dust growth in the evolution of the interstellar medium
- Simulations of globular clusters within their parent galaxies: Metallicity spreads and anomalous precursor populations
- Magnetic fields do not suppress global star formation in low metallicity dwarf galaxies
- Tentative Detection of the Circumgalactic Medium of the Isolated Low-Mass Dwarf Galaxy WLM
- Factories of CO-dark gas: molecular clouds with limited star formation efficiencies by FUV feedback
- Mechanical feedback from stellar winds with an application to galaxy formation at high redshift
- Is the molecular KS relationship universal down to low metallicities?
- The Column Densities of Molecular Gas across Cosmic Time: Bridging Observations and Simulations
- Star Formation Variability as a Probe for the Baryon Cycle within Galaxies
- Pre-supernova feedback mechanisms drive the destruction of molecular clouds in nearby star-forming disc galaxies
- A panchromatic view of star cluster formation in a simulated dwarf galaxy starburst
- The Anatomy of a Star-Forming Galaxy II: the role of FUV heating via dust
- How do supernova remnants cool? -- I. Morphology, optical emission lines, and shocks
- Hybrid-chimes: A model for radiative cooling and the abundances of ions and molecules in simulations of galaxy formation
- Mergers all the way down: stellar collisions and kinematics of a dense hierarchically forming massive star cluster in a dwarf starburst
- Resolution criteria to avoid artificial clumping in Lagrangian hydrodynamic simulations with a multi-phase interstellar medium
- Modelling H and its effects on star formation using a joint implementation of GADGET-3 and KROME
- Photoelectric heating effects on the evolution of luminous disk galaxies
- The Noctua Suite of Simulations -- The Difficulty of Growing Massive Black Holes in Low-Mass Dwarf Galaxies
- Exploring effects of IMF sampling and SN feedback injection on star formation and metallicity in ultra-faint dwarf galaxies
- Impact of radiation feedback on the assembly of star clusters in galactic context
- The First Star-by-star -body/Hydrodynamics Simulation of Our Galaxy Coupling with a Surrogate Model
- Quokka-based understanding of outflows (QED) -- II. X-ray metallicity gradients as a signature of galactic wind metal loading
- SILCC -- IX. The multi-phase interstellar medium at low metallicity
- RIGEL: Feedback-regulated cloud-scale star formation efficiency in a simulated dwarf galaxy merger
- Modeling supernova feedback in galaxy formation simulations with energy-conserving momentum injection
- LYRA II: Cosmological dwarf galaxy formation with inhomogeneous Population III enrichment
- Grouped star formation: converting sink particles to stars in hydrodynamical simulations
- The importance of the way in which supernova energy is distributed around young stellar populations in simulations of galaxies
- How non-thermal pressure impacts the modelling of star formation in galaxy formation simulations
- Imladris: a detailed and flexible model for galaxy simulations with individual stars