Metal-loaded outflows in sub-Milky Way galaxies in the CIELO simulations

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Miranda, Valentina P., Tissera, Patricia B., Sillero, Emanuel, Gonzalez-Jara, Jenny, Bignone, Lucas, Muñoz-Escobar, Ignacio, Pedrosa, Susana, Domínguez-Tenreiro, Rosa
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914343007813632
author Miranda, Valentina P.
Tissera, Patricia B.
Sillero, Emanuel
Gonzalez-Jara, Jenny
Bignone, Lucas
Muñoz-Escobar, Ignacio
Pedrosa, Susana
Domínguez-Tenreiro, Rosa
author_facet Miranda, Valentina P.
Tissera, Patricia B.
Sillero, Emanuel
Gonzalez-Jara, Jenny
Bignone, Lucas
Muñoz-Escobar, Ignacio
Pedrosa, Susana
Domínguez-Tenreiro, Rosa
contents Supernova (SN) feedback-driven galactic outflows are a key physical process that contributes to the baryon cycle by regulating the star formation activity, reducing the amount of metals in low-mass galaxies and enriching the circumgalactic (CGM) and intergalactic media (IGM). We aim to understand the chemical loop of sub-Milky Way (MW) galaxies and their nearby regions. We studied 15 simulated central sub-MW galaxies (M* <= 10^10 Msun) and intermediate-mass galaxies (M* \sim 10^10 Msun) from the CIELO-P7 high-resolution simulations. We followed the evolution of the progenitor galaxies, their properties and the characteristics of the outflows within the redshift range z = [0, 7]. We used two dynamically-motivated outflow definitions, unbound outflows and expelled mass rates, to quantify the impact of SN feedback. At z \sim 0, sub-MW galaxies have a larger fraction of their current oxygen mass in the gas phase but have expelled a greater portion beyond the virial radius, compared to their higher-mass counterparts. Galaxies with M* <\sim 10^9 Msun have 10-40 per cent of their total oxygen mass within R200 in the CGM, and an equivalent to 10-60 per cent expelled into the IGM. In contrast, more massive galaxies have most of the oxygen mass locked by the stellar populations. The CGM of low-mass galaxies predominantly contains oxygen low-temperature gas, acting as a metal reservoir. We find that the outflows are more oxygen-rich for sub-MW galaxies, Zout/ZISM \sim 1.5, than for higher-mass galaxies, Zout/ZISM <= 0.5, particularly for z < 2. Mass-loading factors of eta_out \sim 0 - 6 are detected in agreement with observations (abridged).
format Preprint
id arxiv_https___arxiv_org_abs_2511_19630
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Metal-loaded outflows in sub-Milky Way galaxies in the CIELO simulations
Miranda, Valentina P.
Tissera, Patricia B.
Sillero, Emanuel
Gonzalez-Jara, Jenny
Bignone, Lucas
Muñoz-Escobar, Ignacio
Pedrosa, Susana
Domínguez-Tenreiro, Rosa
Astrophysics of Galaxies
Supernova (SN) feedback-driven galactic outflows are a key physical process that contributes to the baryon cycle by regulating the star formation activity, reducing the amount of metals in low-mass galaxies and enriching the circumgalactic (CGM) and intergalactic media (IGM). We aim to understand the chemical loop of sub-Milky Way (MW) galaxies and their nearby regions. We studied 15 simulated central sub-MW galaxies (M* <= 10^10 Msun) and intermediate-mass galaxies (M* \sim 10^10 Msun) from the CIELO-P7 high-resolution simulations. We followed the evolution of the progenitor galaxies, their properties and the characteristics of the outflows within the redshift range z = [0, 7]. We used two dynamically-motivated outflow definitions, unbound outflows and expelled mass rates, to quantify the impact of SN feedback. At z \sim 0, sub-MW galaxies have a larger fraction of their current oxygen mass in the gas phase but have expelled a greater portion beyond the virial radius, compared to their higher-mass counterparts. Galaxies with M* <\sim 10^9 Msun have 10-40 per cent of their total oxygen mass within R200 in the CGM, and an equivalent to 10-60 per cent expelled into the IGM. In contrast, more massive galaxies have most of the oxygen mass locked by the stellar populations. The CGM of low-mass galaxies predominantly contains oxygen low-temperature gas, acting as a metal reservoir. We find that the outflows are more oxygen-rich for sub-MW galaxies, Zout/ZISM \sim 1.5, than for higher-mass galaxies, Zout/ZISM <= 0.5, particularly for z < 2. Mass-loading factors of eta_out \sim 0 - 6 are detected in agreement with observations (abridged).
title Metal-loaded outflows in sub-Milky Way galaxies in the CIELO simulations
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2511.19630