The Role of Heating and Enrichment in Galaxy Formation
arXiv:astro-ph/0003104 · doi:10.1086/319043
Abstract
We show that the winds identified with high-redshift low-mass galaxies may strongly affect the formation of stars in more massive galaxies that form later. With 3D realizations of a simple linear growth model we track gas shocking, metal enrichment, and cooling, together with dark halo formation. We show that outflows typically strip baryonic material out of collapsing intermediate mass halos, suppressing star formation. More massive halos can trap the heated gas but collapse late, leading to a broad bimodal redshift distribution, with a larger characteristic mass associated with the lower redshift peak. This scenario accounts for the observed bell-shaped luminosity function of early type galaxies, explains the small number of Milky Way satellite galaxies relative to Cold Dark Matter models predictions, and provides a possible explanation for the lack of metal poor G-dwarfs in the solar neighborhood and the more general lack of low-metallicity stars in massive galaxies relative to ``closed-box'' models of chemical enrichment. Intergalactic medium heating from outflows should produce spectral distortions in the cosmic microwave background that will be measurable with the next generation of experiments.
19 pages, 12 figures, accepted to ApJ, models refined and minor revisions made
References in corpus (5)
- Multi-wavelength Observations of Dusty Star Formation at Low and High Redshift
- The Observed Probability Distribution Function, Power Spectrum, and Correlation Function of the Transmitted Flux in the Lyman-alpha Forest
- Gas Rich Dwarf Spheroidals
- The Influence of Galactic Outflows on the Formation of Nearby Dwarf Galaxies
- Is There a Detectable Vishniac Effect?
Cited by in corpus (37)
- Cosmological SPH simulations: A hybrid multi-phase model for star formation
- Galactic Winds
- Galaxies and Intergalactic Matter at Redshift z~3: Overview
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Early Metal Enrichment of the Intergalactic Medium by Pregalactic Outflows
- Feedback and the fudamental line of low-luminosity LSB/dwarf galaxies
- Keck Absorption-Line Spectroscopy of Galactic Winds in Ultraluminous Infrared Galaxies
- Early Metal Enrichment by Pregalactic Outflows: II. Simulations of Blow-away
- Metal Enrichment of the Intergalactic Medium in Cosmological Simulations
- The Detectability of the First Stars and Their Cluster Enrichment Signatures
- Contrasting Galaxy Formation from Quantum Wave Dark Matter, DM, with CDM, using Planck and Hubble Data
- Early Enrichment of the Intergalactic Medium and its Feedback on Galaxy Formation
- The flip-side of galaxy formation: A combined model of Galaxy Formation and Cluster Heating
- Spectral Evidence for Widespread Galaxy Outflows at z>4
- Galactic halo cusp-core: tidal compression in mergers
- The Abundance of Low-luminosity Lyman alpha Emitters at High Redshift
- A Galactic Wind at z = 5.190
- High-Redshift Galaxy Outflows and the Formation of Dwarf Galaxies
- Deep GEMINI GMOS-IFU spectroscopy of BAL QSOs: I. Decoupling the BAL, QSO, starburst, NLR, supergiant bubbles and galactic wind in Mrk 231
- Violence in the Dark Ages
- Dark-Halo Cusp: Asymptotic Convergence
- An Analytical Approach to Inhomogeneous Structure Formation
- The Clustering of Intergalactic Metals
- Strong-Lensing Analysis of MS 1358.4+6245: New Multiple Images and Implications for the Well-Resolved z=4.92 Galaxy
- IR mergers and IR QSOs with galactic winds. III. Mrk 231: composite outflow with multiple expanding bubbles and BALs (an exploding young QSO?)
- On the Formation of Galaxy Halos: Comparing NGC 5128 and the Local Group Members
- Anisotropic AGN Outflows and Enrichment of the Intergalactic Medium
- Anisotropic Galactic Outflows and Enrichment of the Intergalactic Medium. I: Monte Carlo Simulations
- Anisotropic AGN Outflows and Enrichment of the Intergalactic Medium. II. Metallicity
- Anisotropic Galactic Outflows and Enrichment of the Intergalactic Medium. II. Numerical Simulations
- Feedback Processes in Early-Type Galaxies
- Suppression of Dwarf Galaxy Formation by Cosmic Shocks
- Column Density Profiles of Cold Clouds Driven by Galactic Outflows
- Linking the Metallicity Distribution of Galactic Halo Stars to the Enrichment History of the Universe
- Galactic Outflows and Evolution of the Interstellar Medium
- The star formation history inferred from long gamma-ray bursts with high pseudo-redshifts
- Mapping the z>=5 SiIV Column Density Distribution onto the Galaxy Stellar Mass Function Using the Cumulative Absorption Cross Section