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Simulations of cosmic chemical enrichment
Chiaki Kobayashi
, Volker Springel
, Simon D. M. White
Centre for Astrophysics Research (CAR)
School of Physics, Engineering & Computer Science
Department of Physics, Astronomy and Mathematics
Research output
:
Contribution to journal
›
Article
›
peer-review
195
Citations (Scopus)
32
Downloads (Pure)
Overview
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Keyphrases
Massive Galaxies
100%
Galaxies
100%
Chemical Enrichment
100%
Baryons
100%
Metallicity
66%
Star Formation
66%
Hypernova
66%
Intergalactic Medium
66%
Cosmological Simulations
33%
High-redshift
33%
Cosmology
33%
Individual-galaxies
33%
Stellar Masses
33%
Galaxy Masses
33%
Star Formation Rate
33%
Lambda
33%
Active Galactic nuclei
33%
Dwarf Galaxies
33%
Low-mass
33%
Simulation Model
33%
Stellar Ages
33%
Cold Gas
33%
Heavy Elements
33%
Stellar Metallicity
33%
Numerical Model
33%
Chemical Evolution
33%
Lyman-break Galaxies
33%
Feedback Processes
33%
Cold Dark Matter
33%
Metal Enrichment
33%
Galactic Outflows
33%
Collapse Models
33%
Galactic Winds
33%
Assembly Time
33%
Damped Lyman-alpha Systems
33%
Gas in Galaxies
33%
Supernova Feedback
33%
Mass-dependent
33%
Physics
Metallicity
100%
Chemical Enrichment
100%
Baryon
100%
Star Formation
66%
Hypernovae
66%
Intergalactic Medium
66%
Chemical Evolution
33%
Supernovae
33%
Stellar Mass
33%
Active Galactic Nuclei
33%
Galaxy Masses
33%
Star Formation Rate
33%
Stellar Ages
33%
Cold Gas
33%
Numerical Model
33%
Galaxy Mass
33%
Lyman-Break Galaxies
33%
Cold Dark Matter
33%
Galactic Wind
33%
Damped Lyman-Alpha Systems
33%
Dwarf Galaxy
33%
Cosmology
33%