The exploration of the spatial distribution of chemical abundances in star-forming regions of galactic discs can help us to understand the complex interplay of physical processes that regulate the star formation activity and the chemical enrichment across a galaxy. We study the azimuthal variations of the normalized oxygen abundance profiles in the highest numerical resolution run of the Evolution and Assembly of GaLaxies and their Environments (EAGLE) Project at z = 0. We use young stellar populations to trace the abundances of star-forming regions. Oxygen profiles are estimated along different line of sights from a centrally located observer. The mean azimuthal variation in the EAGLE discs are ∼0.12 ± 0.03 dex R−1 eff for slopes ...
The abundances of iron and oxygen are homogeneously determined in a sample of 523 nearby (d-0.3, we ...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
The distribution of metals within a galaxy traces the baryon cycle and the buildup of galactic disks...
We use the EAGLE simulations to study the oxygen abundance gradients of gas discs in galaxies within...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...
We use the EAGLE simulations to study the oxygen abundance gradients of gas discs in galaxies within...
We study oxygen abundance profiles of the gaseous disc components in simulatedgalaxies in a hierarch...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...
The spatial distribution of metals reflects, and can be used to constrain, the processes of chemical...
19 pages, 13 figures. Accepted to ApJThe spatial distribution of oxygen in the interstellar medium o...
We present the largest and most homogeneous catalog of H ii regions and associations compiled so far...
The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understandin...
Galactic and extragalactic abundance studies of H II regions, planetary nebulae, and supernova remna...
We study the oxygen abundance profiles of the gas-phase components in hydrodynamical simulations of ...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
The abundances of iron and oxygen are homogeneously determined in a sample of 523 nearby (d-0.3, we ...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
The distribution of metals within a galaxy traces the baryon cycle and the buildup of galactic disks...
We use the EAGLE simulations to study the oxygen abundance gradients of gas discs in galaxies within...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...
We use the EAGLE simulations to study the oxygen abundance gradients of gas discs in galaxies within...
We study oxygen abundance profiles of the gaseous disc components in simulatedgalaxies in a hierarch...
We analyse the evolution of the oxygen abundance gradient of star-forming galaxies with stellar mass...
The spatial distribution of metals reflects, and can be used to constrain, the processes of chemical...
19 pages, 13 figures. Accepted to ApJThe spatial distribution of oxygen in the interstellar medium o...
We present the largest and most homogeneous catalog of H ii regions and associations compiled so far...
The spatial distribution of oxygen in the interstellar medium of galaxies is the key to understandin...
Galactic and extragalactic abundance studies of H II regions, planetary nebulae, and supernova remna...
We study the oxygen abundance profiles of the gas-phase components in hydrodynamical simulations of ...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
The abundances of iron and oxygen are homogeneously determined in a sample of 523 nearby (d-0.3, we ...
We present an analysis of the chemical abundance properties of ≈650 star-forming galaxies at z ≈ 0.6...
The distribution of metals within a galaxy traces the baryon cycle and the buildup of galactic disks...