Galaxy Formation with local photoionisation feedback I. Methods
arXiv:1310.6748 · doi:10.1093/mnras/stt2098
Abstract
We present a first study of the effect of local photoionising radiation on gas cooling in smoothed particle hydrodynamics simulations of galaxy formation. We explore the combined effect of ionising radiation from young and old stellar populations. The method computes the effect of multiple radiative sources using the same tree algorithm used for gravity, so it is computationally efficient and well resolved. The method foregoes calculating absorption and scattering in favour of a constant escape fraction for young stars to keep the calculation efficient enough to simulate the entire evolution of a galaxy in a cosmological context to the present day. This allows us to quantify the effect of the local photoionisation feedback through the whole history of a galaxy`s formation. The simulation of a Milky Way like galaxy using the local photoionisation model forms ~ 40 % less stars than a simulation that only includes a standard uniform background UV field. The local photoionisation model decreases star formation by increasing the cooling time of the gas in the halo and increasing the equilibrium temperature of dense gas in the disc. Coupling the local radiation field to gas cooling from the halo provides a preventive feedback mechanism which keeps the central disc light and produces slowly rising rotation curves without resorting to extreme feedback mechanisms. These preliminary results indicate that the effect of local photoionising sources is significant and should not be ignored in models of galaxy formation.
Accepted for Publication in MNRAS, 13 pages, 13 figures
References in corpus (14)
- A model for cosmological simulations of galaxy formation physics
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- The Direct Detection of Lyman-Continuum Emission from Star-forming Galaxies at z~3
- Radiative feedback and the low efficiency of galaxy formation in low-mass haloes at high redshift
- New Constraints on the Lyman Continuum Escape Fraction at z~1.3
- TRAPHIC - Radiative Transfer for Smoothed Particle Hydrodynamics Simulations
- A Systematic Look at the Effects of Radiative Feedback on Disc Galaxy Formation
- The MaGICC Baryon Cycle: The Enrichment History of Simulated Disc Galaxies
- SPHRAY: A Smoothed Particle Hydrodynamics Ray Tracer for Radiative Transfer
- Are There Enough Ionizing Photons to Reionize the Universe by z=6?
- Simulations of galaxy formation with radiative transfer: Hydrogen reionization and radiative feedback
- Direct Observational Test Rules Out Small MgII Absorbers
Cited by in corpus (42)
- Theoretical Challenges in Galaxy Formation
- A Characteristic Scale for Cold Gas
- Dust Formation in Milky Way-like Galaxies
- FIRE-3: Updated Stellar Evolution Models, Yields, & Microphysics and Fitting Functions for Applications in Galaxy Simulations
- The Argo Simulation: I. Quenching of Massive Galaxies at High Redshift as a Result of Cosmological Starvation
- Galaxies that Shine: radiation-hydrodynamical simulations of disk galaxies
- AREPO-RT: Radiation hydrodynamics on a moving mesh
- Radiative Stellar Feedback in Galaxy Formation: Methods and Physics
- A Universal Density Structure for Circum-Galactic Gas
- What Causes The Formation of Disks and End of Bursty Star Formation?
- On the OVI Abundance in the Circumgalactic Medium of Low-Redshift Galaxies
- Bulge Formation via Mergers in Cosmological Simulations
- NIHAO VIII: Circum-galactic medium and outflows - The puzzles of HI and OVI gas distributions
- Gas-rich dwarf galaxies as a new probe of dark matter interactions with ordinary matter
- The distribution of mass components in simulated disc galaxies
- Kinetic energy from supernova feedback in high-resolution galaxy simulations
- Photochemistry and Heating/Cooling of the Multiphase Interstellar Medium with UV Radiative Transfer for Magnetohydrodynamic Simulations
- A needle in a haystack? Catching Pop III stars in the Epoch of Reionization: I. Pop III star forming environments
- Efficacy of early stellar feedback in low gas surface density environments
- From Discs to Bulges: effect of mergers on the morphology of galaxies
- Ejection of globular cluster interstellar media through ionization by white dwarfs
- Spatial Decorrelation of Young Stars and Dense Gas as a Probe of the Star Formation-Feedback Cycle in Galaxies
- CGM properties in VELA and NIHAO simulations; the OVI ionization mechanism: dependence on redshift, halo mass and radius
- NIHAO III: The constant disc gas mass conspiracy
- The response of dark matter haloes to elliptical galaxy formation: a new test for quenching scenarios
- Global Simulations of Galactic Discs: Violent Feedback from Clustered Supernovae during Bursts of Star Formation
- Empirically-motivated early feedback: momentum input by stellar feedback in galaxy simulations inferred through observations
- Radiative feedback and cosmic molecular gas: the role of different radiative sources
- Simulations of isolated dwarf galaxies formed in dark matter halos with different mass assembly histories
- The seeds of supermassive black holes and the role of local radiation and metal spreading
- Galaxy Ecosystems: gas contents, inflows and outflows
- Galaxy Formation with Local Photoionization Feedback -II. Effect of X-Ray Emission from Binaries and Hot Gas
- Local photoionization feedback effects on galaxies
- Simulating ionization feedback from young massive stars: impact of numerical resolution
- Galactic coronae in Milky Way-like galaxies: the role of stellar feedback in gas accretion
- TREVR: A general radiative transfer algorithm
- Radiation fields by intermediate-age stellar populations with binaries as ionizing sources of H II regions
- Angular momentum evolution of bulge stars in disc galaxies in NIHAO
- Distinguishing Between Photoionized and Collisionally Ionized Gas in the Circumgalactic Medium
- Escaping the maze: a statistical sub-grid model for cloud-scale density structures in the interstellar medium
- Can Cooling and Heating Functions be Modeled with Homogeneous Radiation Fields?
- Mainly on the Plane: Observing the Extended, Ionized Disks of Milky Way Analogs in IllustrisTNG