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The nuclear stellar disc of the Milky Way : A dynamically cool and metal-rich component possibly formed from the central molecular zone

Schultheis, M. (author)
Côte d'Azur Observatory
Fritz, T. K. (author)
Instituto de Astrofísica de Canarias,University of La Laguna (ULL)
Nandakumar, G. (author)
Australian National University,Center of Excellence for Astrophysics in Three Dimensions (ASTRO-3D)
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Rojas-Arriagada, A. (author)
Pontifical Catholic University of Chile,Millennium Institute for Astrophysics
Nogueras-Lara, F. (author)
Max Planck Institute for Astronomy
Feldmeier-Krause, A. (author)
University of Chicago,Max Planck Institute for Astronomy
Gerhard, O. (author)
Max Planck Institute for Extraterrestrial Physics
Neumayer, N. (author)
Max Planck Institute for Astronomy
Patrick, L. R. (author)
University of Alicante
Prieto, M. A. (author)
Instituto de Astrofísica de Canarias,University of La Laguna (ULL)
Schödel, R. (author)
CSIC Instituto de Astrofísica de Andalucía (IAA)
Mastrobuono-Battisti, A. (author)
Lund University,Lunds universitet,Astronomi - Genomgår omorganisation,Institutionen för astronomi och teoretisk fysik - Genomgår omorganisation,Naturvetenskapliga fakulteten,Lund Observatory - Undergoing reorganization,Department of Astronomy and Theoretical Physics - Undergoing reorganization,Faculty of Science
Sormani, M. C. (author)
Heidelberg University
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 (creator_code:org_t)
2021-06-29
2021
English.
In: Astronomy and Astrophysics. - : EDP Sciences. - 0004-6361 .- 1432-0746. ; 650
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Context. The nuclear stellar disc (NSD) is, together with the nuclear star cluster (NSC) and the central massive black hole, one of the main components in the central parts of our Milky Way. However, until recently, only a few studies of the stellar content of the NSD have been obtained owing to extreme extinction and stellar crowding. Aims. We study the kinematics and global metallicities of the NSD based on the observations of K/M giant stars via a dedicated KMOS (VLT, ESO) spectroscopic survey. Methods. We traced radial velocities and metallicities, which were derived based on spectral indices (Na I and CO) along the NSD, and compared those with a Galactic bulge sample of APOGEE (DR16) and data from the NSC. Results. We find that the metallicity distribution function and the fraction of metal-rich and metal-poor stars in the NSD are different from the corresponding distributions and ratios of the NSC and the Galactic bulge. By tracing the velocity dispersion as a function of metallicity, we clearly see that the NSD is kinematically cool and that the velocity dispersion decreases with increasing metallicity contrary to the inner bulge sample of APOGEE (|b|< 4°). Using molecular gas tracers (H2CO, CO(4-3)) of the central molecular zone (CMZ), we find an astonishing agreement between the gas rotation and the rotation of the metal-rich population. This agreement indicates that the metal-rich stars could have formed from gas in the CMZ. On the other hand, the metal-poor stars show a much slower rotation profile with signs of counter-rotation, thereby indicating that these stars have a different origin. Conclusions. Coupling kinematics with global metallicities, our results demonstrate that the NSD is chemically and kinematically distinct with respect to the inner bulge, which indicates a different formation scenario.

Subject headings

NATURVETENSKAP  -- Fysik -- Astronomi, astrofysik och kosmologi (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Astronomy, Astrophysics and Cosmology (hsv//eng)

Keyword

Galaxy: nucleus
Galaxy: stellar content
Galaxy: structure
Stars: fundamental parameters

Publication and Content Type

art (subject category)
ref (subject category)

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