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Physical Sciences and Mathematics Commons

Open Access. Powered by Scholars. Published by Universities.®

Astrophysics and Astronomy

Faculty Scholarship

Series

2018

Galaxies: Kinematics and dynamics

Articles 1 - 1 of 1

Full-Text Articles in Physical Sciences and Mathematics

Galaxy And Mass Assembly (Gama): Impact Of The Group Environment On Galaxy Star Formation, S. Barsanti, M. S. Owers, S. Brough, L. J.M. Davies, S. P. Driver, M. L.P. Gunawardhana, Benne W. Holwerda, J. Liske, J. Loveday, K. A. Pimbblet, A. S.G. Robotham, E. N. Taylor Apr 2018

Galaxy And Mass Assembly (Gama): Impact Of The Group Environment On Galaxy Star Formation, S. Barsanti, M. S. Owers, S. Brough, L. J.M. Davies, S. P. Driver, M. L.P. Gunawardhana, Benne W. Holwerda, J. Liske, J. Loveday, K. A. Pimbblet, A. S.G. Robotham, E. N. Taylor

Faculty Scholarship

We explore how the group environment may affect the evolution of star-forming galaxies. We select 1197 Galaxy And Mass Assembly groups at 0.05 ≤ z ≤ 0.2 and analyze the projected phase space (PPS) diagram, i.e., the galaxy velocity as a function of projected group-centric radius, as a local environmental metric in the low-mass halo regime 1012 ≤ (M 200/M o) < 1014. We study the properties of star-forming group galaxies, exploring the correlation of star formation rate (SFR) with radial distance and stellar mass. We find that the fraction of star-forming group members is higher in the PPS regions dominated by recently accreted galaxies, whereas passive galaxies dominate the virialized regions. We observe a small decline in specific SFR of star-forming galaxies toward the group center by a factor ∼1.2 with respect to field galaxies. Similar to cluster studies, we conclude for low-mass halos that star-forming group galaxies represent an infalling population from the field to the halo and show suppressed star formation.