Kinetic energy from supernova feedback in high-resolution galaxy simulations
arXiv:1410.3822 · doi:10.1088/0004-637X/809/1/69
Abstract
We describe a new method for adding a prescribed amount of kinetic energy to simulated gas modeled on a cartesian grid by directly altering grid cells' mass and velocity in a distributed fashion. The method is explored in the context of supernova feedback in high-resolution ( pc) hydrodynamic simulations of galaxy formation. Resolution-dependence is a primary consideration in our application of the method and simulations of isolated explosions (performed at different resolutions) motivate a resolution-dependent scaling for the injected fraction of kinetic energy that we apply in cosmological simulations of a Msun dwarf halo. We find that in high density media ( 50 cm) with coarse resolution ( pc per cell), results are sensitive to the initial kinetic energy fraction due to early and rapid cooling. In our galaxy simulations, the deposition of small amounts of supernova energy in kinetic form (as little as 1%) has a dramatic impact on the evolution of the system, resulting in an order of magnitude suppression of stellar mass. The overall behavior of the galaxy in the two highest resolution simulations we perform appears to converge. We discuss the resulting distribution of stellar metallicities, an observable sensitive to galactic wind properties, and find that while the new method demonstrates increased agreement with observed systems, significant discrepancies remain, likely due to simplistic assumptions that neglect contributions from Type Ia supernovae and stellar winds.
23 pages, 16 figures, accepted for publication in ApJ
References in corpus (16)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- Forming Disk Galaxies in Lambda CDM Simulations
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- Momentum Injection by Supernovae in the Interstellar Medium
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- On the onset of galactic winds in quiescent star forming galaxies
- Supernova Feedback in an Inhomogeneous Interstellar Medium
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- Cosmic ray feedback in hydrodynamical simulations of galaxy formation
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- Feedback and the Structure of Simulated Galaxies at redshift z=2
- A test suite for quantitative comparison of hydrodynamics codes in astrophysics
- Metal Cooling in Simulations of Cosmic Structure Formation
- The effect of feedback and reionization on star formation in low-mass dwarf galaxy haloes
Cited by in corpus (48)
- Dark matter cores all the way down
- The role of cosmic ray pressure in accelerating galactic outflows
- The origin of the Milky Way globular clusters
- Supernova-driven winds in simulated dwarf galaxies
- Simulations of the Milky Way's central molecular zone -- I. Gas dynamics
- Supernova feedback in a local vertically stratified medium: interstellar turbulence and galactic winds
- How galaxies form stars: the connection between local and global star formation in galaxy simulations
- Simulations of the star-forming molecular gas in an interacting M51-like galaxy
- COS-Burst: Observations of the Impact of Starburst-Driven Winds on the Properties of the Circum-Galactic Medium
- The impact of stellar feedback on the density and velocity structure of the interstellar medium
- Supernova Feedback and the Hot Gas Filling Fraction of the Interstellar Medium
- Thermal and nonthermal dust sputtering in hydrodynamical simulations of the multiphase interstellar medium
- Physics of Galactic Metals: Evolutionary Effects due to Production, Distribution, Feedback & Interaction with Black Holes
- Properties of Resonantly Produced Sterile Neutrino Dark Matter Subhalos
- Supernova feedback and the energy deposition in molecular clouds
- Modelling of the Effects of Stellar Feedback during Star Cluster Formation Using a Hybrid Gas and N-Body Method
- Collisional N-Body Dynamics Coupled to Self-Gravitating Magnetohydrodynamics Reveals Dynamical Binary Formation
- A study of the circum-galactic medium at z ~ 0.6 using DLA-galaxies
- Simple Yet Powerful: Hot Galactic Outflows Driven by Supernovae
- How Do Supernovae Impact the Circumgalactic Medium? I. Large-Scale Fountains Around a Milky Way-Like Galaxy
- How runaway stars boost galactic outflows
- Efficacy of early stellar feedback in low gas surface density environments
- The LBT Satellites of Nearby Galaxies Survey (LBT-SONG): The Satellite Population of NGC 628
- Bursting Bubbles: Feedback from Clustered SNe and the Trade-off Between Turbulence and Outflows
- Empirically Constrained Predictions for Metal-Line Emission from the Circumgalactic Medium
- Modeling for Stellar Feedback in Galaxy Formation Simulations
- Code Comparison in Galaxy Scale Simulations with Resolved Supernova Feedback: Lagrangian vs. Eulerian Methods
- Massive star cluster formation I. High star formation efficiency while resolving feedback of individual stars
- Supernovae feedback propagation: the role of turbulence
- Global Simulations of Galactic Discs: Violent Feedback from Clustered Supernovae during Bursts of Star Formation
- High-resolution three-dimensional simulations of gas removal from ultrafaint dwarf galaxies. I. Stellar feedback
- Cosmological Simulations of Dwarf Galaxies with Cosmic Ray Feedback
- How Cosmic Rays Mediate the Evolution of the Interstellar Medium
- The Impact of Type Ia Supernovae in Quiescent Galaxies: I. Formation of the Multiphase Interstellar medium
- Modelling supernova driven turbulence
- GMC Evolution in a Barred Spiral Galaxy with Star Formation and Thermal Feedback
- Molecular Gas Outflow in the Starburst Galaxy NGC 1482
- Momentum Injection by Clustered Supernovae: Testing Subgrid Feedback Prescriptions
- Gas removal in the Ursa Minor galaxy: linking hydrodynamics and chemical evolution models
- Calibration of a star formation and feedback model for cosmological simulations with Enzo
- The Effects of Metallicity and Abundance Pattern of the ISM on Supernova Feedback
- Is the molecular KS relationship universal down to low metallicities?
- Supernova dust destruction in the magnetized turbulent ISM
- Physical Properties and Scaling Relations of Molecular Clouds: the Impact of Star Formation
- Boundary conditions in hydrodynamic simulations of isolated galaxies and their impact on the gas-loss processes
- Star Formation for Predictive Primordial Galaxy Formation
- ARCHITECTS I: Impact of subgrid physics on the simulated properties of the circumgalactic medium
- Centrally concentrated star formation in young clusters