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Author
Nidever, David L.
Olsen, Knut

Walker, Alistair

Vivas, A. Katherina

Blum, Robert

Kaleida, Catherine
Choi, Yumi

Conn, Blair C.

Gruendl, R. A.

Bell, Eric F.

Besla, Gurtina
Muñoz, Ricardo R.
Gallart, Carme

Martin, Nicolas F.

Olszewski, Edward W.
Saha, Abhijit

Monachesi, Antonela

Monelli, Matteo

de Boer, Thomas J. L.
Johnson, L. Clifton

Zaritsky, Dennis

Stringfellow, G. S.

van der Marel, Roeland P.

Cioni, Maria-Rosa L.

Jin, Shoko

Majewski, Steven R.

Martinez-Delgado, David

Monteagudo, Lara
Noël, Noelia E. D.
Bernard, Edouard J.

Kunder, Andrea

Chu, You-Hua

Bell, Cameron P. M.

Santana, F.

Frechem, Joshua
Medina, Gustavo E.
Parkash, Vaishali
Navarrete, J. C. Serón
Hayes, Christian
Affiliation
Univ Arizona, Steward ObservIssue Date
2017-10-25Keywords
galaxies: dwarfgalaxies: individual (Large Magellanic Cloud, Small Magellanic Cloud)
Local Group
Magellanic Clouds
surveys
Metadata
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IOP PUBLISHING LTDCitation
SMASH: Survey of the MAgellanic Stellar History 2017, 154 (5):199 The Astronomical JournalJournal
The Astronomical JournalRights
© 2017. The American Astronomical Society. All rights reserved.Collection Information
This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.Abstract
The Large and Small Magellanic Clouds are unique local laboratories for studying the formation and evolution of small galaxies in exquisite detail. The Survey of the MAgellanic Stellar History (SMASH) is an NOAO community Dark Energy Camera (DECam) survey of the Clouds mapping 480 deg2 (distributed over similar to 2400 square degrees at similar to 20% filling factor) to similar to 24th. mag in ugriz. The primary goals of SMASH are to identify low surface brightness stellar populations associated with the stellar halos and tidal debris of the Clouds, and to derive spatially resolved star formation histories. Here, we present a summary of the survey, its data reduction, and a description of the first public Data Release (DR1). The SMASH DECam data have been reduced with a combination of the NOAO Community Pipeline, the PHOTRED automated point-spread-function photometry pipeline, and custom calibration software. The astrometric precision is similar to 15 mas and the accuracy is similar to 2 mas with respect to the Gaia reference frame. The photometric precision is similar to 0.5%-0.7% in griz and similar to 1% in u with a calibration accuracy of similar to 1.3% in all bands. The median 5s point source depths in ugriz are 23.9, 24.8, 24.5, 24.2, and 23.5 mag. The SMASH data have already been used to discover the Hydra II Milky Way satellite, the SMASH 1 old globular cluster likely associated with the LMC, and extended stellar populations around the LMC out to R. similar to. 18.4 kpc. SMASH DR1 contains measurements of similar to 100 million objects distributed in 61 fields. A prototype version of the NOAO Data Lab provides data access and exploration tools.ISSN
1538-3881Version
Final published versionSponsors
McLaughlin Fellowship at the University of Michigan; NSF [AST 1655677, AST 1008342, 1655677, AST 1313006, AST 1312863]; Australian Research Council [DP150100862]; ERC [308024]; German Academic Exchange Service (DAAD), from the UK's Science and Technology Facility Council [ST/M001008/1]; German Academic Exchange Service (DAAD), from the the European Research Council (ERC) under the European Union's Horizon research and innovation programme [682115]; Netherlands Organization for Scientific Research (NWO) Veni grant [639.041.131]; "The Milky Way System" of the German Research Foundation (DFB) [Sonderforschungsbereich (SFB) 881]; CONICYT Anillo project [ACT-1122, BASAL PFB-06]; NASA; U.S. Department of Energy; U.S. National Science Foundation; Ministry of Science and Education of Spain; Science and Technology Facilities Council of the United Kingdom; Higher Education Funding Council for England; National Center for Supercomputing Applications at the University of Illinois at Urbana-Champaign; Kavli Institute of Cosmological Physics at the University of Chicago; Center for Cosmology and Astro-Particle Physics at the Ohio State University; Mitchell Institute for Fundamental Physics and Astronomy at Texas AM University; Financiadora de Estudos e Projetos; Fundacao Carlos Chagas Filho de Amparo; Fundacao Carlos Chagas Filho de Amparo a Pesquisa do Estado do Rio de Janeiro; Conselho Nacional de Desenvolvimento Cientfico e Tecnologico and the Ministerio da Ciencia; Tecnologia e Inovacao; Deutsche Forschungsgemeinschaft; Argonne National Laboratory; University of California at Santa Cruz; University of Cambridge; Centro de Investigaciones Energeticas; Medioambientales y Tecnologicas-Madrid; University of Chicago; University College London; DES-Brazil Consortium; University of Edinburgh; Eidgenssische Technische Hochschule (ETH) Zurich; Fermi National Accelerator Laboratory; University of Illinois at Urbana-Champaign; Institut de Ciencies de l'Espai (IEEC/CSIC); Institut de Fisica d'Altes Energies; Lawrence Berkeley National Laboratory; Ludwig-Maximilians Universitat Munchen; associated Excellence Cluster Universe; University of Michigan; National Optical Astronomy Observatory; University of Nottingham; Ohio State University; University of Pennsylvania; University of Portsmouth; SLAC National Accelerator Laboratory; Stanford University; University of Sussex; Texas AM University; National Aeronautics and Space Administration; National Science FoundationAdditional Links
http://stacks.iop.org/1538-3881/154/i=5/a=199?key=crossref.0e65f8c96b8281a703c0fd17fd04327dae974a485f413a2113503eed53cd6c53
10.3847/1538-3881/aa8d1c