Supernova-driven winds in simulated dwarf galaxies
arXiv:1805.06614 · doi:10.1093/mnras/sty3252
Abstract
We investigate galactic winds driven by supernova (SN) explosions in an isolated dwarf galaxy using high-resolution (particle mass , number of neighbor ) smoothed-particle hydrodynamics simulations that include non-equilibrium cooling and chemistry, individual star formation, stellar feedback and metal enrichment. Clustered SNe lead to the formation of superbubbles which break out of the disk and vent out hot gas, launching the winds. We find much weaker winds than what cosmological simulations typically adopt at this mass scale. At the virial radius, the time-averaged loading factors of mass, momentum and energy are 3, 1 and 0.05, respectively, and the metal enrichment factor is 1.5. Winds that escape the halo consist of two populations that differ in their launching temperatures. Hot gas acquires enough kinetic energy to escape when launched while warm gas does not. However, warm gas can be further accelerated by the ram pressure of the subsequently launched hot gas and eventually escape. The strong interactions between different temperature phases highlight the caveat of extrapolating properties of warm gas to large distances based on its local conditions (e.g. the Bernoulli parameter). Our convergence study finds that wind properties converge when the cooling masses of individual SNe are resolved, which corresponds to with an injection mass of . The winds weaken dramatically once the SNe become unresolved. We demonstrate that injecting the terminal momentum of SNe, a popular sub-grid model in the literature, fails to capture SN winds irrespective of the inclusion of residual thermal energy.
Version accepted for publication, including discussion on effects of residual thermal energy and injection mass (appendix A & B)
References in corpus (11)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Astrophysics Source Code Library
- Athena: A New Code for Astrophysical MHD
- Momentum Injection by Supernovae in the Interstellar Medium
- Simulating the formation of molecular clouds. I. Slow formation by gravitational collapse from static initial conditions
- Numerical Simulations of Multiphase Winds and Fountains from Star-Forming Galactic Disks: I. Solar Neighborhood TIGRESS Model
- Vertical structure of a supernova-driven turbulent magnetized ISM
- Modelling the supernova-driven ISM in different environments
- 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
- Snap, Crackle, Pop: sub-grid supernova feedback in AMR simulations of disk galaxies
Cited by in corpus (71)
- First Results from the TNG50 Simulation: Galactic outflows driven by supernovae and black hole feedback
- Characterizing mass, momentum, energy and metal outflow rates of multi-phase galactic winds in the FIRE-2 cosmological simulations
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- The most massive stars in very young star clusters with a limited mass: Evidence favours significant self-regulation in the star formation processes
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- Simple Yet Powerful: Hot Galactic Outflows Driven by Supernovae
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- Radiation-MagnetoHydrodynamics simulations of cosmic ray feedback in disc galaxies
- First results from SMAUG: The need for preventative stellar feedback and improved baryon cycling in semi-analytic models of galaxy formation
- SIRIUS project. I. Star formation models for star-by-star simulations of star clusters and galaxy formation
- Cosmological simulations of dwarfs: the need for ISM physics beyond SN feedback alone
- INFERNO: Galactic winds in dwarf galaxies with star-by-star simulations including runaway stars
- 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
- Kinematics and Dynamics of Multiphase Outflows in Simulations of the Star-Forming Galactic ISM
- 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
- Arkenstone I: A Novel Method for Robustly Capturing High Specific Energy Outflows In Cosmological Simulations
- On the origin of magnetic driven winds and the structure of the galactic dynamo in isolated galaxies
- Osaka Feedback Model II: Modeling Supernova Feedback Based on High-Resolution Simulations
- Regulation of Star Formation by a Hot Circumgalactic Medium
- Formation of star clusters and enrichment by massive stars in simulations of low-metallicity galaxies with a fully sampled initial stellar mass function
- Uncertainties in supernova input rates drive qualitative differences in simulations of galaxy evolution
- Origin of highly -process-enhanced stars in a cosmological zoom-in simulation of a Milky Way-like galaxy
- The in situ formation of molecular and warm ionised gas triggered by hot outflows
- SPICE: the connection between cosmic reionisation and stellar feedback in the first galaxies
- Radiative Supernova Remnants and Supernova Feedback
- Boosting galactic outflows with enhanced resolution
- Star-formation driven outflows in local dwarf galaxies as revealed from [CII] observations by Herschel
- EMPRESS. VI. Outflows Investigated in Low-Mass Galaxies with : Weak Feedback in Low-Mass Galaxies?
- Co-evolution of Dust and Chemistry in Galaxy Simulations with a Resolved Interstellar Medium
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- H2 chemistry in galaxy simulations: an improved supernova feedback model
- Ultra-Diffuse Galaxies as Extreme Star-forming Environments II: Star Formation and Pressure Balance in HI-Rich UDGs
- Simulations of globular clusters within their parent galaxies: Metallicity spreads and anomalous precursor populations
- Star Formation Variability as a Probe for the Baryon Cycle within Galaxies
- Feedback and dynamical masses in high- galaxies: the advent of high-resolution NIRSpec spectroscopy
- Bursty Star Formation in Dwarfs is Sensitive to Numerical Choices in Supernova Feedback Models
- Mergers all the way down: stellar collisions and kinematics of a dense hierarchically forming massive star cluster in a dwarf starburst
- Numerical dependencies of the galactic dynamo in isolated galaxies with SPH
- Aeos: Transport of Metals from Minihalos following Population III Stellar Feedback
- The ALPINE-ALMA [CII] Survey: Unveiling the baryon evolution in the ISM of star-forming galaxies
- Anatomy of galactic star formation history: Roles of different modes of gas accretion, feedback, and recycling
- A-priori Validation of Subgrid-scale Models for Astrophysical Turbulence
- Massive Galaxies Impede Massive Outflows
- Photoelectric heating effects on the evolution of luminous disk galaxies
- Hot magnetic halo of NGC628 (M74)
- Not gone with the Wind: Survival of High-Velocity Molecular Clouds in the Galactic center
- Quokka-based understanding of outflows (QED) -- II. X-ray metallicity gradients as a signature of galactic wind metal loading
- Magnetic fields and hot gas in M101
- Numerical Methods for Simulating Star Formation
- Imladris: a detailed and flexible model for galaxy simulations with individual stars
- The importance of the way in which supernova energy is distributed around young stellar populations in simulations of galaxies
- Spectrally resolved cosmic rays: II -- Momentum-dependent cosmic ray diffusion drives powerful galactic winds
- Modeling Multiphase Galactic Outflows: A Multifluid Moving Mesh Approach
- CROCODILE-DWARF: Assembly and Kinematics of Field Dwarf Galaxies with GADGET4-OSAKA