Galaxy And Mass Assembly (GAMA): From filaments to voids, how extreme environment affects gas metallicity and SFR in galaxies
arXiv:2507.06781 · doi:10.1051/0004-6361/202555871
Abstract
We analyse the stellar mass-metallicity (M-Z) and stellar mass-star formation rate (M-SFR) relations for star-forming galaxies classified by their environment and compare them with matched control samples of field galaxies. Using data from the Galaxy And Mass Assembly (GAMA) survey and the filament catalogue, which categorises galaxies into filaments, tendrils, and voids, we correct emission lines for dust extinction and select star-forming galaxies based on the BPT diagram. Metallicity and star formation rate are estimated and used to fit the M-Z and M-SFR relations through both Bayesian and least-squares approaches. We find that metallicity increases in denser environments, while star formation rate decreases, with the most notable contrasts seen between filament/tendril galaxies and those in voids. Galaxies in filaments and tendrils that are not group members show little to no deviation from their control samples. Morphological analysis reveals no significant differences. Overall, galaxies in denser environments appear more chemically enriched with lower SFRs, likely due to processed material and reduced cold gas availability, while isolated void galaxies maintain higher SFRs and lower metallicities, possibly due to ongoing cold gas accretion. These results suggest that local environmental conditions, rather than large-scale structure alone, are the main drivers of the observed trends.
Accepted for publication in A&A
References in corpus (21)
- Array Programming with NumPy
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Galaxy Pairs in the Sloan Digital Sky Survey I: Star Formation, AGN Fraction, and the Luminosity/Mass-Metallicity Relation
- The Role of Environment in the Mass-Metallicity Relation
- The Effects of Diffuse Ionized Gas and Spatial Resolution on Metallicity Gradients: TYPHOON Two-Dimensional Spectrophotometry of M83
- Galaxy Zoo: the dependence of the star formation-stellar mass relation on spiral disk morphology
- Galaxy And Mass Assembly (GAMA): The dependence of the galaxy luminosity function on environment, redshift and colour
- The Effect of Filaments and Tendrils on the HI Content of Galaxies
- Star formation history of galaxies from z=0 to z=0.7 A backward approach to the evolution of star-forming galaxies
- The Void Galaxy Survey: Photometry, structure and identity of void galaxies
- The mass-metallicity relation at z~1-2 and its dependence on star formation rate
- Revisiting the role of bars in AGN fuelling with propensity score sample matching
- The effect of cosmic web filaments on galaxy evolution
- Galaxy And Mass Assembly (GAMA): The effect of galaxy group environment on active galactic nuclei
- Morphological Segregation in the Surroundings of Cosmic Voids
- Galaxy And Mass Assembly (GAMA): the interplay between galaxy mass, SFR and heavy element abundance in paired galaxy sets
- Galaxy And Mass Assembly: Galaxy Zoo spiral arms and star formation rates
- Morphologies of galaxies within voids
- Galaxy And Mass Assembly (GAMA): The environmental impact on SFR and metallicity in galaxy groups
- On the Contribution of Very Massive Stars to the Sulfur Abundance in Star-Forming Galaxies: the Role of PISN