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THE SAGES LEGACY UNIFYING GLOBULARS AND GALAXIES SURVEY (SLUGGS): SAMPLE DEFINITION, METHODS, AND INITIAL RESULTS

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posted on 2024-08-06, 09:26 authored by Jean BrodieJean Brodie, Aaron J. Romanowsky, Jay Strader, Duncan ForbesDuncan Forbes, Caroline Foster, Zachary G. Jennings, Nicola Pastorello, Vincenzo Pota, Christopher Usher, Christina Blom, Justin Kader, Joel C. Roediger, Lee R. Spitler, Alexa Villaume, Jacob A. Arnold, Sreeja S. Kartha, Kristin A. Woodley
We introduce and provide the scientific motivation for a wide-field photometric and spectroscopic chemodynamical survey of nearby early-type galaxies (ETGs) and their globular cluster (GC) systems. The SAGES Legacy Unifying Globulars and GalaxieS (SLUGGS) survey is being carried out primarily with Subaru/Suprime-Cam and Keck/DEIMOS. The former provides deep gri imaging over a 900 arcmin2 field-of-view to characterize GC and host galaxy colors and spatial distributions, and to identify spectroscopic targets. The NIR Ca II triplet provides GC line-of-sight velocities and metallicities out to typically ~8 R e, and to ~15 R e in some cases. New techniques to extract integrated stellar kinematics and metallicities to large radii (~2-3 R e) are used in concert with GC data to create two-dimensional (2D) velocity and metallicity maps for comparison with simulations of galaxy formation. The advantages of SLUGGS compared with other, complementary, 2D-chemodynamical surveys are its superior velocity resolution, radial extent, and multiple halo tracers. We describe the sample of 25 nearby ETGs, the selection criteria for galaxies and GCs, the observing strategies, the data reduction techniques, and modeling methods. The survey observations are nearly complete and more than 30 papers have so far been published using SLUGGS data. Here we summarize some initial results, including signatures of two-phase galaxy assembly, evidence for GC metallicity bimodality, and a novel framework for the formation of extended star clusters and ultracompact dwarfs. An integrated overview of current chemodynamical constraints on GC systems points to separate, in situ formation modes at high redshifts for metal-poor and metal-rich GCs.

Funding

Timing the birth of galaxies using supercomputer simulations and telescope observations

Australian Research Council

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ISSN

1538-4357

Journal title

The Astrophysical Journal

Volume

796

Issue

1

Article number

article no. 52

Pagination

24 pp

Publisher

Institute of Physics

Copyright statement

Copyright © 2014 The American Astronomical Society. The published version is reproduced in accordance with the copyright policy of the publisher and can be also be located at http://dx.doi.org/10.1088/0004-637X/796/1/52

Language

eng

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