The elemental abundance of quiescent galaxies in the LEGA-C survey: the (non-)evolution of [α/Fe] from z = 0.75 to z = 0

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 525:3 (2023) 4219-4230

Authors:

Davide Bevacqua, Paolo Saracco, Francesco La Barbera, Giuseppe D’Ago, Roberto De Propris, Ignacio Ferreras, Anna Gallazzi, Anna Pasquali, Chiara Spiniello

Different higher order kinematics between star-forming and quiescent galaxies based on the SAMI, MAGPI, and LEGA-C surveys

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 525:2 (2023) 2765-2788

Authors:

Francesco D’Eugenio, Arjen van der Wel, Caro Derkenne, Josha van Houdt, Rachel Bezanson, Edward N Taylor, Jesse van de Sande, William M Baker, Eric F Bell, Joss Bland-Hawthorn, Asa FL Bluck, Sarah Brough, Julia J Bryant, Matthew Colless, Luca Cortese, Scott M Croom, Pieter van Dokkum, Deanne Fisher, Caroline Foster, Amelia Fraser-McKelvie, Anna Gallazzi, Anna de Graaff, Brent Groves, Claudia del P. Lagos, Tobias J Looser, Roberto Maiolino, Michael Maseda, J Trevor Mendel, Angelos Nersesian, Camilla Pacifici, Joanna M Piotrowska, Adriano Poci, Rhea-Silvia Remus, Gauri Sharma, Sarah M Sweet, Sabine Thater, Kim-Vy Tran, Hannah Übler, Lucas M Valenzuela, Emily Wisnioski, Stefano Zibetti

Evolution in the orbital structure of quiescent galaxies from MAGPI, LEGA-C, and SAMI surveys: direct evidence for merger-driven growth over the last 7 Gyr

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 525:2 (2023) 2789-2805

Authors:

Francesco D’Eugenio, Arjen van der Wel, Joanna M Piotrowska, Rachel Bezanson, Edward N Taylor, Jesse van de Sande, William M Baker, Eric F Bell, Sabine Bellstedt, Joss Bland-Hawthorn, Asa FL Bluck, Sarah Brough, Julia J Bryant, Matthew Colless, Luca Cortese, Scott M Croom, Caro Derkenne, Pieter van Dokkum, Deanne Fisher, Caroline Foster, Anna Gallazzi, Anna de Graaff, Brent Groves, Josha van Houdt, Claudia del P. Lagos, Tobias J Looser, Roberto Maiolino, Michael Maseda, J Trevor Mendel, Angelos Nersesian, Camilla Pacifici, Adriano Poci, Rhea-Silvia Remus, Sarah M Sweet, Sabine Thater, Kim-Vy Tran, Hannah Übler, Lucas M Valenzuela, Emily Wisnioski, Stefano Zibetti

Sub-second infrared variability from the archetypal accreting neutron star 4U 1728−34

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 525:2 (2023) 2509-2518

Authors:

FM Vincentelli, P Casella, A Borghese, Y Cavecchi, G Mastroserio, L Stella, D Altamirano, M Armas Padilla, MC Baglio, TM Belloni, J Casares, VA Cúneo, N Degenaar, M Díaz Trigo, R Fender, T Maccarone, J Malzac, D Mata Sánchez, M Middleton, S Migliari, T Muñoz-Darias, K O’Brien, G Panizo-Espinar, J Sánchez-Sierras, DM Russell, P Uttley

WISDOM Project – XVII. Beam-by-beam properties of the molecular gas in early-type galaxies

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 525:3 (2023) 4270-4298

Authors:

Thomas G Williams, Martin Bureau, Timothy A Davis, Michele Cappellari, Woorak Choi, Jacob S Elford, Satoru Iguchi, Jindra Gensior, Fu-Heng Liang, Anan Lu, Ilaria Ruffa, Hengyue Zhang

Abstract:

<jats:title>ABSTRACT</jats:title> <jats:p>We present a study of the molecular gas of seven early-type galaxies with high angular resolution data obtained as part of the mm-Wave Interferometric Survey of Dark Object Masses (WISDOM) project with the Atacama Large Millimeter/submillimeter Array. Using a fixed spatial-scale approach, we study the mass surface density (Σ) and velocity dispersion (σ) of the molecular gas on spatial scales ranging from 60 to 120 pc. Given the spatial resolution of our data (20–70 pc), we characterize these properties across many thousands of individual sightlines (≈50 000 at our highest physical resolution). The molecular gas along these sightlines has a large range (≈2 dex) of mass surface densities and velocity dispersions $\approx 40~{{\ \rm per\ cent}}$ higher than those of star-forming spiral galaxies. It has virial parameters αvir that depend weakly on the physical scale observed, likely due to beam smearing of the bulk galactic rotation, and is generally supervirial. Comparing the internal turbulent pressure (Pturb) to the pressure required for dynamic equilibrium (PDE), the ratio Pturb/PDE is significantly less than unity in all galaxies, indicating that the gas is not in dynamic equilibrium and is strongly compressed, in apparent contradiction to the virial parameters. This may be due to our neglect of shear and tidal forces, and/or the combination of three-dimensional and vertical diagnostics. Both αvir and Pturb anticorrelate with the global star-formation rate of our galaxies. We therefore conclude that the molecular gas in early-type galaxies is likely unbound, and that large-scale dynamics likely plays a critical role in its regulation. This contrasts to the giant molecular clouds in the discs of late-type galaxies, that are much closer to dynamical equilibrium.</jats:p>