A full appreciation of the role played by gas metallicity (Z), star formation rate (SFR) and stellar mass (M*) is fundamental to understanding how galaxies form and evolve. The connections between these three parameters at different redshifts significantly affect galaxy evolution, and thus provide important constraints for galaxy evolution models. Using data from the Sloan Digital Sky Survey–Data Release 7 (SDSS–DR7) and the Galaxy and Mass Assembly (GAMA) surveys, we study the relationships and dependences between SFR, Z and M*, as well as the Fundamental Plane for star-forming galaxies. We combine both surveys using volume-limited samples up to a redshift of z ≈ 0.36. The GAMA and SDSS surveys complement each other when analysing the rela...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M-*) over cosmic time,...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
A full appreciation of the role played by gasmetallicity (Z), star formation rate (SFR) and stellar ...
A full appreciation of the role played by gas metallicity (Z), star formation rate (SFR) and stellar...
A full appreciation of the role played by gasmetallicity (Z), star formation rate (SFR) and stellar ...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
We study the star formation rate (SFR), stellar mass (M), and the gas metallicity (Z) for 4636 galax...
© 2021 2020 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Socie...
With the aim of understanding the coevolution of star formation rate (SFR), stellar mass (M*), and o...
We present a study of the relationships and environmental dependencies between stellar mass, star fo...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M*) over cosmic time, ...
The mass-metallicity relation (MZR) represents one of the most important scaling relations in the co...
We obtained Subaru FMOS observations of Hα emitting galaxies selected from the HiZELS, to investigat...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M-*) over cosmic time,...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
A full appreciation of the role played by gasmetallicity (Z), star formation rate (SFR) and stellar ...
A full appreciation of the role played by gas metallicity (Z), star formation rate (SFR) and stellar...
A full appreciation of the role played by gasmetallicity (Z), star formation rate (SFR) and stellar ...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
We study the star formation rate (SFR), stellar mass (M), and the gas metallicity (Z) for 4636 galax...
© 2021 2020 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Socie...
With the aim of understanding the coevolution of star formation rate (SFR), stellar mass (M*), and o...
We present a study of the relationships and environmental dependencies between stellar mass, star fo...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M*) over cosmic time, ...
The mass-metallicity relation (MZR) represents one of the most important scaling relations in the co...
We obtained Subaru FMOS observations of Hα emitting galaxies selected from the HiZELS, to investigat...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...
Recent work suggests that galaxy evolution, and the build-up of stellar mass (M-*) over cosmic time,...
We study the interplay between gas phase metallicity (Z), specific star formation rate (SSFR) and ne...