Metal Enrichment in the Reionization Epoch
arXiv:1511.01120 · doi:10.1007/978-3-319-21957-8_6
Abstract
The presence of elements heavier than helium ("metals") is of fundamental importance for a large number of astrophysical processes occurring in planet, star and galaxy formation; it also affects cosmic structure formation and evolution in several ways. Even a small amount of heavy elements can dramatically alter the chemistry of the gas, opening the path to complex molecules. Metals might enhance the ability of the gas to radiate away its thermal energy, thus favoring the formation of gravitationally bound objects; they can also condensate in a solid phase (dust grains), partly or totally blocking radiation from luminous sources. Finally, they represent useful tracers of energy deposition by stars and probe the physical properties of the environment by absorption or emission lines. Last, but certainly not least, life -- as we know it on Earth -- is tightly related to the presence of at least some of the heavy elements. In this pedagogical review I will concentrate on the connection between early metal enrichment and cosmic reionization. As we will see these two processes are intimately connected and their joint study might turn out to be fundamental in understanding the overall evolution of the Universe during the first billion years after the Big Bang, an epoch corresponding to redshifts z>6.
Book chapter in Understanding the Epoch of Cosmic Reionization: Challenges and Progress, Springer International Publishing, Ed. Andrei Mesinger, ISBN 978-3-319-21956-1. arXiv admin note: text overlap with arXiv:astro-ph/0007248 by other authors
References in corpus (17)
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- Fragmentation of star-forming clouds enriched with the first dust
- Population III stars: hidden or disappeared ?
- Search for TeV Gamma-ray Emission from GRB 100621A, an extremely bright GRB in X-rays, with H.E.S.S
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- Impact of dark matter decays and annihilations on reionization
- Ultra faint dwarfs: probing early cosmic star formation
- Simulating cosmic metal enrichment by the first galaxies
- The Nature and Origin of Low-Redshift O VI Absorbers
- The first generation of stars in LCDM cosmology
- The First Stars in The Universe
- Unveiling the nature of dark matter with high redshift 21 cm line experiments
- Testing Reionization with Gamma Ray Burst Absorption Spectra
- The path to metallicity: synthesis of CNO elements in standard BBN
- The circumgalactic medium of high redshift galaxies
- How Did the IGM Become Enriched?
Cited by in corpus (7)
- Dusty galaxies in the Epoch of Reionization: simulations
- The ALMA REBELS Survey: the dust content of Lyman Break Galaxies
- The Aurora radiation-hydrodynamical simulations of reionization: calibration and first results
- Low star formation efficiency in typical galaxies at z=5-6
- Probing Reionization and Early Cosmic Enrichment with the MgII Forest
- Observational challenges in Ly-alpha intensity mapping
- Exploration of the high-redshift universe enabled by THESEUS