Applying the Tremaine-Weinberg Method to Nearby Galaxies: Stellar Mass-Based Pattern Speeds, and Comparisons with ISM Kinematics

ArXiv 2102.01091 (2021)

Authors:

Thomas G Williams, Eva Schinnerer, Eric Emsellem, Sharon Meidt, Miguel Querejeta, Francesco Belfiore, Ivana Bešlić, Frank Bigiel, Mélanie Chevance, Daniel A Dale, Simon CO Glover, Kathryn Grasha, Ralf S Klessen, JM Diederik Kruijssen, Adam K Leroy, Hsi-An Pan, Jérôme Pety, Ismael Pessa, Erik Rosolowsky, Toshiki Saito, Francesco Santoro, Andreas Schruba, Mattia C Sormani, Jiayi Sun, Elizabeth J Watkins

FIR-luminous [C ii] Emitters in the ALMA-SCUBA-2 COSMOS Survey (AS2COSMOS): The Nature of Submillimeter Galaxies in a 10 Comoving Megaparsec-scale Structure at z ∼ 4.6

The Astrophysical Journal American Astronomical Society 907:2 (2021) 122

Authors:

I Mitsuhashi, Y Matsuda, Ian Smail, NH Hayatsu, JM Simpson, AM Swinbank, H Umehata, U Dudzevičiūtė, JE Birkin, S Ikarashi, Chian-Chou Chen, K Tadaki, H Yajima, Y Harikane, H Inami, SC Chapman, B Hatsukade, D Iono, A Bunker, Y Ao, T Saito, J Ueda, S Sakamoto

How robustly can we constrain the low-mass end of the z ∼6-7 stellar mass function? The limits of lensing models and stellar population assumptions in the Hubble Frontier Fields

Monthly Notices of the Royal Astronomical Society 501:2 (2021) 1568-1590

Authors:

LJ Furtak, H Atek, MD Lehnert, J Chevallard, S Charlot

Abstract:

We present new measurements of the very low mass end of the galaxy stellar mass function (GSMF) at z ∼6-7 computed from a rest-frame ultraviolet selected sample of dropout galaxies. These galaxies lie behind the six Hubble Frontier Field clusters and are all gravitationally magnified. Using deep Spitzer/IRAC and Hubble Space Telescope imaging, we derive stellar masses by fitting galaxy spectral energy distributions and explore the impact of different model assumptions and parameter degeneracies on the resulting GSMF. Our sample probes stellar masses down to M∗> 106, M⊙ and we find the z ∼6-7 GSMF to be best parametrized by a modified Schechter function that allows for a turnover at very low masses. Using a Monte Carlo Markov chain analysis of the GSMF, including accurate treatment of lensing uncertainties, we obtain a relatively steep low-mass end slope α ≃ -1.96-0.08+0.09 and a turnover at log (MT/M⊙)≃ 7.10-0.56+0.17 with a curvature of β ≃ 1.00-0.73+0.87 for our minimum assumption model with constant star formation history (SFH) and low dust attenuation, AV ≤ 0.2. We find that the z ∼6-7 GSMF, in particular its very low mass end, is significantly affected by the assumed functional form of the star formation history and the degeneracy between stellar mass and dust attenuation. For example, the low-mass end slope ranges from α ≃ -1.82-0.07+0.08 for an exponentially rising SFH to α ≃ -2.34-0.10+0.11 when allowing AV of up to 3.25. Future observations at longer wavelengths and higher angular resolution with the James Webb Space Telescope are required to break these degeneracies and to robustly constrain the stellar mass of galaxies on the extreme low-mass end of the GSMF.

Rise of the Titans: Gas Excitation and Feedback in a Binary Hyperluminous Dusty Starburst Galaxy at z ∼ 6

The Astrophysical Journal American Astronomical Society 907:2 (2021) 62

Authors:

Dominik A Riechers, Hooshang Nayyeri, Denis Burgarella, Bjorn HC Emonts, David L Clements, Asantha Cooray, Rob J Ivison, Seb Oliver, Ismael Pérez-Fournon, Dimitra Rigopoulou, Douglas Scott

Structured Variational Inference for Simulating Populations of Radio Galaxies

ArXiv 2102.01007 (2021)

Authors:

David J Bastien, Anna MM Scaife, Hongming Tang, Micah Bowles, Fiona Porter