Smoothed particle hydrodynamics for galaxy formation simulations: improved treatments of multiphase gas, of star formation and of supernovae feedback
arXiv:astro-ph/0207448 · doi:10.1046/j.1365-8711.2003.06984.x
Abstract
We investigate a new implementation of the Smoothed Particle Hydrodynamics technique (SPH) designed to improve the realism with which galaxy formation can be simulated. In situations where cooling leads to the coexistence of phases of very different density and temperature, our method substantially reduces artificial overcooling near phase boundaries, prevents the exclusion of hot gas from the vicinity of cold ``clouds'', and allows relative motion of the two phases at each point. We demonstrate the numerical stability of our scheme in the presence of extremely steep density and temperature gradients, as well as in strong accretion shocks and cooling flows. In addition, we present new implementations of star formation and feedback which simulate the effect of energy injection into multiphase gas more successfully than previous schemes. Our feedback recipes deposit thermal energy separately in cold dense gas and hot diffuse gas, and can explicitly reinject cold gas into the hot phase. They make it possible to damp star formation effectively, to reheat cold gas, and to drive outflows into the galaxy halo and beyond. We show feedback effects to be strongest in small mass objects where much of the gas can be expelled. After idealised tests, we carry out a first low resolution study of galaxy formation in a CDM universe. Feedback results in substantial and mass-dependent reductions in the total baryonic mass gathered onto the final object as well as in significant modulation of the star formation history.
41 pages, 8 figures. Submitted to MNRAS
Cited by in corpus (80)
- The cosmological simulation code GADGET-2
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- GIZMO: A New Class of Accurate, Mesh-Free Hydrodynamic Simulation Methods
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Theoretical Challenges in Galaxy Formation
- Smoothed Particle Hydrodynamics and Magnetohydrodynamics
- On the relation between the Schmidt and Kennicutt-Schmidt star formation laws and its implications for numerical simulations
- Fundamental differences between SPH and grid methods
- Simulating galactic outflows with thermal supernova feedback
- Simulating galactic outflows with kinetic supernova feedback
- A General Class of Lagrangian Smoothed Particle Hydrodynamics Methods and Implications for Fluid Mixing Problems
- Smoothed Particle Hydrodynamics in Astrophysics
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- X-ray properties of galaxy clusters and groups from a cosmological hydrodynamical simulation
- Galaxy Formation Theory
- Feedback in simulations of disc-galaxy major mergers
- The Formation and Survival of Discs in a Lambda-CDM Universe
- On the onset of galactic winds in quiescent star forming galaxies
- Towards a more realistic population of bright spiral galaxies in cosmological simulations
- Effects of Supernova Feedback on the Formation of Galaxy Disks
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- The EAGLE simulations of galaxy formation: the importance of the hydrodynamics scheme
- A Superbubble Feedback Model for Galaxy Simulations
- Feedback and metal enrichment in cosmological SPH simulations I. A model for chemical enrichment
- Astrophysical Smooth Particle Hydrodynamics
- Resolving mixing in Smoothed Particle Hydrodynamics
- Moving mesh cosmology: the hydrodynamics of galaxy formation
- Formation of Isolated Dwarf Galaxies with Feedback
- Towards simulating star formation in the interstellar medium
- Why stellar feedback promotes disc formation in simulated galaxies
- Angular momentum transport and disk morphology in SPH simulations of galaxy formation
- Do high-velocity clouds form by thermal instability?
- Moving Mesh Cosmology: Properties of Gas Disks
- Simulating Star Formation and Feedback in Galactic Disk Models
- Scaling Relations of Dwarf Galaxies without Supernova-Driven Winds
- Interpreting the Evolution of the Size - Luminosity Relation for Disk Galaxies from Redshift 1 to the Present
- The Dynamical and Chemical Evolution of Dwarf Spheroidal Galaxies with GEAR
- The Effect of the Interstellar Model on Star Formation Properties in Galactic Disks
- The impact of mergers on relaxed X-ray clusters - III. Effects on compact cool cores
- Bulge Formation via Mergers in Cosmological Simulations
- IGM metal enrichment through dust sputtering
- The MaGICC Baryon Cycle: The Enrichment History of Simulated Disc Galaxies
- Cloud Structure and Physical Conditions in Star-Forming Regions from Optical Observations. II. Analysis
- A sub-resolution multiphase interstellar medium model of star formation and SNe energy feedback
- Simulating Chandra observations of galaxy clusters
- Clues for the origin of the fundamental metallicity relations. I: The hierarchical building up of the structure
- Where are the missing cosmic metals ?
- A three-phase amplification of the cosmic magnetic field in galaxies
- Galaxy Mergers with Adaptive Mesh Refinement: Star Formation and Hot Gas Outflow
- Observing simulated galaxy clusters with PHOX: a novel X-ray photon simulator
- Supernova feedback and the energy deposition in molecular clouds
- Kinetic energy from supernova feedback in high-resolution galaxy simulations
- Discovery of PAHs in the Halo of NGC 5907
- Radiative Transfer Effects on the Lya Forest
- Properties of QSO Metal Line Absorption Systems at High Redshifts: Nature and Evolution of the Absorbers and New Evidence on Escape of Ionizing Radiation from Galaxies
- Galactic Winds in Cosmological Simulations of the Circumgalactic Medium
- Effects of Early Cosmic Reionization on the Substructure Problem in Galactic Halo
- New multi-zoom method for N-body simulations: application to galaxy growth by accretion
- The host galaxies of long-duration GRBs in a cosmological hierarchical scenario
- Effects of metal enrichment and metal cooling in galaxy growth and cosmic star formation history
- Lyman-αabsorption beyond the disk of simulated spiral galaxies
- Formation and evolution of early-type galaxies. II. Models with quasi-cosmological initial conditions
- Modelling Shear Flows with SPH and Grid Based Methods
- Galactic outflow and diffuse gas properties at z>=1 using different baryonic feedback models
- PAHs in the Halo of NGC 5529
- Simulating the formation and evolution of galaxies: Multi-phase description of the interstellar medium, star formation, and energy feedback
- Molecular cloud regulated star formation in galaxies
- Absorption features of high redshift galactic winds
- Comparing Simulations of AGN Feedback
- How Metals Are Transported In And Out Of A Galactic Disk: Dependence On The Hydrodynamic Schemes In Numerical Simulations
- Exploring the relation between dust mass and galaxy properties using Dusty SAGE
- The Proximity Effect Around High Redshift Galaxies
- Numerical dependencies of the galactic dynamo in isolated galaxies with SPH
- The Formation of a Milky Way-sized Disk Galaxy 1. A Comparison of Numerical Methods
- Modelling H and its effects on star formation using a joint implementation of GADGET-3 and KROME
- The EDGE-CALIFA survey: The effect of active galactic nucleus feedback on the integrated properties of galaxies at different stages of their evolution
- SPRAY: A smoothed particle radiation hydrodynamics code for modeling high intensity laser-plasma interactions
- ngravs: Distinct gravitational interactions in GADGET-2
- On the quenching of star formation in observed and simulated central galaxies: Evidence for the role of integrated AGN feedback