Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters

We used integrated-light medium-resolution spectra of six Galactic globular clusters and model stellar atmospheres to carry out population synthesis and to derive chemical composition and age of the clusters. We used medium-resolution spectra of globular clusters published by Schiavon et al. (2005),...

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Main Authors: Khamidullina D. A., Sharina M. E., Shimansky V. V., Davoust E.
Format: Article
Language:English
Published: De Gruyter 2014-12-01
Series:Open Astronomy
Subjects:
Online Access:https://doi.org/10.1515/astro-2017-0189
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spelling doaj-c055bc77a7c84473bd8b221f6f8c46a42021-09-06T19:40:12ZengDe GruyterOpen Astronomy2543-63762014-12-01233-426026610.1515/astro-2017-0189astro-2017-0189Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular ClustersKhamidullina D. A.0Sharina M. E.1Shimansky V. V.2Davoust E.3 Kazan Federal University, Kremlevskaya 18, Kazan, 420008, Russian Federation Special Astrophysical Observatory, Russian Academy of Sciences, N. Arkhyz, Karachai-Cherkessian Republic, 369167, Russian Federation Kazan Federal University, Kremlevskaya 18, Kazan, 420008, Russian Federation IRAP, Université de Toulouse, CNRS, 14 avenue E. Belin, F-31400, FranceWe used integrated-light medium-resolution spectra of six Galactic globular clusters and model stellar atmospheres to carry out population synthesis and to derive chemical composition and age of the clusters. We used medium-resolution spectra of globular clusters published by Schiavon et al. (2005), as well as our long-slit observations with the 1.93 m telescope of the Haute Provence Observatory. The observed spectra were fitted to the theoretical ones interactively. As an initial approach, we used masses, radii and log g of stars in the clusters corresponding to the best fitting isochrones in the observed color-magnitude diagrams. The computed synthetic blanketed spectra of stars were summed according to the Chabrier mass function. To improve the determination of age and helium content, the shape and depth of the Balmer absorption lines was analysed. The abundances of Mg, Ca, C and several other elements were derived. A reasonable agreement with the literature data both in chemical composition and in age of the clusters is found. Our method might be useful for the development of stellar population models and for a better understanding of extragalactic star clusters.https://doi.org/10.1515/astro-2017-0189galaxy: globular clusters: individual: ngc 104, ngc 6121, ngc 6205, ngc 6218, ngc 6838, ngc 7078galaxy: abundances
collection DOAJ
language English
format Article
sources DOAJ
author Khamidullina D. A.
Sharina M. E.
Shimansky V. V.
Davoust E.
spellingShingle Khamidullina D. A.
Sharina M. E.
Shimansky V. V.
Davoust E.
Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters
Open Astronomy
galaxy: globular clusters: individual: ngc 104, ngc 6121, ngc 6205, ngc 6218, ngc 6838, ngc 7078
galaxy: abundances
author_facet Khamidullina D. A.
Sharina M. E.
Shimansky V. V.
Davoust E.
author_sort Khamidullina D. A.
title Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters
title_short Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters
title_full Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters
title_fullStr Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters
title_full_unstemmed Medium Resolution Spectroscopy and Chemical Composition of Galactic Globular Clusters
title_sort medium resolution spectroscopy and chemical composition of galactic globular clusters
publisher De Gruyter
series Open Astronomy
issn 2543-6376
publishDate 2014-12-01
description We used integrated-light medium-resolution spectra of six Galactic globular clusters and model stellar atmospheres to carry out population synthesis and to derive chemical composition and age of the clusters. We used medium-resolution spectra of globular clusters published by Schiavon et al. (2005), as well as our long-slit observations with the 1.93 m telescope of the Haute Provence Observatory. The observed spectra were fitted to the theoretical ones interactively. As an initial approach, we used masses, radii and log g of stars in the clusters corresponding to the best fitting isochrones in the observed color-magnitude diagrams. The computed synthetic blanketed spectra of stars were summed according to the Chabrier mass function. To improve the determination of age and helium content, the shape and depth of the Balmer absorption lines was analysed. The abundances of Mg, Ca, C and several other elements were derived. A reasonable agreement with the literature data both in chemical composition and in age of the clusters is found. Our method might be useful for the development of stellar population models and for a better understanding of extragalactic star clusters.
topic galaxy: globular clusters: individual: ngc 104, ngc 6121, ngc 6205, ngc 6218, ngc 6838, ngc 7078
galaxy: abundances
url https://doi.org/10.1515/astro-2017-0189
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AT shimanskyvv mediumresolutionspectroscopyandchemicalcompositionofgalacticglobularclusters
AT davouste mediumresolutionspectroscopyandchemicalcompositionofgalacticglobularclusters
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