Exploring the origin of the distance bimodality of stars in the periphery of the Small Magellanic Cloud with APOGEE and Gaia

Author:

Almeida Andres1ORCID,Majewski Steven R1ORCID,Nidever David L2ORCID,Olsen Knut A G3ORCID,Monachesi Antonela45ORCID,Kallivayalil Nitya1ORCID,Hasselquist Sten67ORCID,Choi Yumi38ORCID,Povick Joshua T2ORCID,Wilson John C1ORCID,Geisler Doug459ORCID,Lane Richard R10ORCID,Nitschelm Christian11ORCID,Sobeck Jennifer S12ORCID,Stringfellow Guy S13ORCID

Affiliation:

1. Department of Astronomy, University of Virginia , PO Box 400325, Charlottesville, VA 22904 , USA

2. Department of Physics, Montana State University , PO Box 173840, Bozeman, MT 59717-3840 , USA

3. NSF’s National Optical-Infrared Astronomy Research Laboratory , 950 N. Cherry Ave., Tucson, AZ 85719 , USA

4. Instituto Multidisciplinario de Investigacion y Postgrado, Universidad de La Serena , Raul Bitran 1305, La Serena , Chile

5. Departamento de Astronomia, Universidad de La Serena , Av. Cisternas 1200, La Serena 1720169 , Chile

6. Space Telescope Science Institute , 3700 San Martin Drive, Baltimore, MD 21218 , USA

7. Department of Physics & Astronomy, University of Utah , Salt Lake City, UT 84112 , USA

8. Department of Astronomy, University of California Berkeley , Berkeley, CA 94720 , USA

9. Departmento de Astronomía, Universidad de Concepción , Casilla 160-C, Concepción 4070409 , Chile

10. Centro de Investigación en Astronomía, Universidad Bernardo O’Higgins , Avenida Viel 1497, Santiago 8370993 , Chile

11. Centro de Astronomía (CITEVA), Universidad de Antofagasta , Avenida Angamos 601, Antofagasta 1270300 , Chile

12. Department of Astronomy, University of Washington , Seattle, WA 98195-1700 , USA

13. Center for Astrophysics and Space Astronomy, Department of Astrophysical and Planetary Sciences, University of Colorado , Boulder, CO 80309-0389 , USA

Abstract

ABSTRACT The Magellanic Cloud system represents a unique laboratory for study of both interacting dwarf galaxies and the ongoing process of the formation of the Milky Way and its halo. We focus on one aspect of this complex, three-body interaction – the dynamical perturbation of the Small Magellanic Cloud (SMC) by the Large Magellanic Cloud (LMC), and specifically potential tidal effects on the SMC’s eastern side. Using Gaia astrometry and the precise radial velocities (RVs) and multielement chemical abundances from Apache Point Observatory Galactic Evolution Experiment (APOGEE-2) Data Release 17, we explore the well-known distance bimodality on the eastern side of the SMC. Through estimated stellar distances, proper motions, and RVs, we characterize the kinematics of the two populations in the bimodality and compare their properties with those of SMC populations elsewhere. Moreover, while all regions explored by APOGEE seem to show a single chemical enrichment history, the metallicity distribution function (MDF), of the ‘far’ stars on the eastern periphery of the SMC is found to resemble that for the more metal-poor fields of the western periphery, whereas the MDF for the ‘near’ stars on the eastern periphery resembles that for stars in the SMC Centre. The closer eastern periphery stars also show RVs (corrected for SMC rotation and bulk motion) that are, on average, approaching us relative to all other SMC populations sampled. We interpret these trends as evidence that the near stars on the eastern side of the SMC represent material pulled out of the central SMC as part of its tidal interaction with the LMC.

Funder

National Science Foundation

FONDECYT

Max Planck Society

Alfred P. Sloan Foundation

U.S. Department of Energy Office of Science

Publisher

Oxford University Press (OUP)

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