SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients

Detalhes bibliográficos
Autor(a) principal: Dias, Bruno Moreira de Souza
Data de Publicação: 2016
Outros Autores: Kerber, Leandro de Oliveira, Barbuy, Beatriz, Bica, Eduardo Luiz Damiani, Ortolani, Sergio
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRGS
Texto Completo: http://hdl.handle.net/10183/170555
Resumo: Context. The evolution and structure of the Magellanic Clouds is currently under debate. The classical scenario in which both the Large and Small Magellanic Clouds (LMC, SMC) are orbiting the Milky Way has been challenged by an alternative in which the LMC and SMC are in their first close passage to our Galaxy. The clouds are close enough to us to allow spatially resolved observation of their stars, and detailed studies of stellar populations in the galaxies are expected to be able to constrain the proposed scenarios. In particular, the west halo (WH) of the SMC was recently characterized with radial trends in age and metallicity that indicate tidal disruption. Aims. We intend to increase the sample of star clusters in the west halo of the SMC with homogeneous age, metallicity, and distance derivations to allow a better determination of age and metallicity gradients in this region. Positions are compared with the orbital plane of the SMC from models. Methods. Comparisons of observed and synthetic V(BV) colour-magnitude diagrams were used to derive age, metallicity, distance, and reddening for star clusters in the SMC west halo. Observations were carried out using the 4.1 m SOAR telescope. Photometric completeness was determined through artificial star tests, and the members were selected by statistical comparison with a control field Results. We derived an age of 1.23 0.07 Gyr and [Fe=H] = 0:87 0:07 for the reference cluster NGC 152, compatible with literature parameters. Age and metallicity gradients are confirmed in the WH: 2.6 0.6 Gyr/ and 0.19 0.09 dex/ , respectively. The age-metallicity relation for the WH has a low dispersion in metallicity and is compatible with a burst model of chemical enrichment. All WH clusters seem to follow the same stellar distribution predicted by dynamical models, with the exception of AM-3, which should belong to the counter-bridge. Brück 6 is the youngest cluster in our sample. It is only 130 40 Myr old and may have been formed during the tidal interaction of SMC-LMC that created the WH and the Magellanic bridge. Conclusions.We suggest that it is crucial to split the SMC cluster population into groups: main body, wing and bridge, counter-bridge, and WH. This is the way to analyse the complex star formation and dynamical history of our neighbour. In particular, we show that the WH has clear age and metallicity gradients and an age-metallicity relation that is also compatible with the dynamical model that claims a tidal influence of the LMC on the SMC.
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spelling Dias, Bruno Moreira de SouzaKerber, Leandro de OliveiraBarbuy, BeatrizBica, Eduardo Luiz DamianiOrtolani, Sergio2017-11-24T02:26:24Z20160004-6361http://hdl.handle.net/10183/170555001048051Context. The evolution and structure of the Magellanic Clouds is currently under debate. The classical scenario in which both the Large and Small Magellanic Clouds (LMC, SMC) are orbiting the Milky Way has been challenged by an alternative in which the LMC and SMC are in their first close passage to our Galaxy. The clouds are close enough to us to allow spatially resolved observation of their stars, and detailed studies of stellar populations in the galaxies are expected to be able to constrain the proposed scenarios. In particular, the west halo (WH) of the SMC was recently characterized with radial trends in age and metallicity that indicate tidal disruption. Aims. We intend to increase the sample of star clusters in the west halo of the SMC with homogeneous age, metallicity, and distance derivations to allow a better determination of age and metallicity gradients in this region. Positions are compared with the orbital plane of the SMC from models. Methods. Comparisons of observed and synthetic V(BV) colour-magnitude diagrams were used to derive age, metallicity, distance, and reddening for star clusters in the SMC west halo. Observations were carried out using the 4.1 m SOAR telescope. Photometric completeness was determined through artificial star tests, and the members were selected by statistical comparison with a control field Results. We derived an age of 1.23 0.07 Gyr and [Fe=H] = 0:87 0:07 for the reference cluster NGC 152, compatible with literature parameters. Age and metallicity gradients are confirmed in the WH: 2.6 0.6 Gyr/ and 0.19 0.09 dex/ , respectively. The age-metallicity relation for the WH has a low dispersion in metallicity and is compatible with a burst model of chemical enrichment. All WH clusters seem to follow the same stellar distribution predicted by dynamical models, with the exception of AM-3, which should belong to the counter-bridge. Brück 6 is the youngest cluster in our sample. It is only 130 40 Myr old and may have been formed during the tidal interaction of SMC-LMC that created the WH and the Magellanic bridge. Conclusions.We suggest that it is crucial to split the SMC cluster population into groups: main body, wing and bridge, counter-bridge, and WH. This is the way to analyse the complex star formation and dynamical history of our neighbour. In particular, we show that the WH has clear age and metallicity gradients and an age-metallicity relation that is also compatible with the dynamical model that claims a tidal influence of the LMC on the SMC.application/pdfengAstronomy and astrophysics. Les Ulis. Vol. 591 (July 2016), A11, 16 p.Aglomerados estelaresGrande Nuvem de MagalhãesFotometria astronômicaMetalicidadeHalosGalaxies: star clusters: generalMagellanic cloudsGalaxies: structureHertzsprung-Russell and C-M diagramsGalaxies: stellar contentSMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradientsEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSORIGINAL001048051.pdf001048051.pdfTexto completo (inglês)application/pdf11218147http://www.lume.ufrgs.br/bitstream/10183/170555/1/001048051.pdf982aab97d2534a4d1a1cec54ec05fb52MD51TEXT001048051.pdf.txt001048051.pdf.txtExtracted Texttext/plain67310http://www.lume.ufrgs.br/bitstream/10183/170555/2/001048051.pdf.txt5b367e0f212861988c84e751f4fad104MD5210183/1705552023-10-25 03:39:31.773341oai:www.lume.ufrgs.br:10183/170555Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2023-10-25T06:39:31Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false
dc.title.pt_BR.fl_str_mv SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
title SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
spellingShingle SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
Dias, Bruno Moreira de Souza
Aglomerados estelares
Grande Nuvem de Magalhães
Fotometria astronômica
Metalicidade
Halos
Galaxies: star clusters: general
Magellanic clouds
Galaxies: structure
Hertzsprung-Russell and C-M diagrams
Galaxies: stellar content
title_short SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
title_full SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
title_fullStr SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
title_full_unstemmed SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
title_sort SMC west halo : a slice of the galaxy that is being tidally stripped? Star clusters trace age and metallicity gradients
author Dias, Bruno Moreira de Souza
author_facet Dias, Bruno Moreira de Souza
Kerber, Leandro de Oliveira
Barbuy, Beatriz
Bica, Eduardo Luiz Damiani
Ortolani, Sergio
author_role author
author2 Kerber, Leandro de Oliveira
Barbuy, Beatriz
Bica, Eduardo Luiz Damiani
Ortolani, Sergio
author2_role author
author
author
author
dc.contributor.author.fl_str_mv Dias, Bruno Moreira de Souza
Kerber, Leandro de Oliveira
Barbuy, Beatriz
Bica, Eduardo Luiz Damiani
Ortolani, Sergio
dc.subject.por.fl_str_mv Aglomerados estelares
Grande Nuvem de Magalhães
Fotometria astronômica
Metalicidade
Halos
topic Aglomerados estelares
Grande Nuvem de Magalhães
Fotometria astronômica
Metalicidade
Halos
Galaxies: star clusters: general
Magellanic clouds
Galaxies: structure
Hertzsprung-Russell and C-M diagrams
Galaxies: stellar content
dc.subject.eng.fl_str_mv Galaxies: star clusters: general
Magellanic clouds
Galaxies: structure
Hertzsprung-Russell and C-M diagrams
Galaxies: stellar content
description Context. The evolution and structure of the Magellanic Clouds is currently under debate. The classical scenario in which both the Large and Small Magellanic Clouds (LMC, SMC) are orbiting the Milky Way has been challenged by an alternative in which the LMC and SMC are in their first close passage to our Galaxy. The clouds are close enough to us to allow spatially resolved observation of their stars, and detailed studies of stellar populations in the galaxies are expected to be able to constrain the proposed scenarios. In particular, the west halo (WH) of the SMC was recently characterized with radial trends in age and metallicity that indicate tidal disruption. Aims. We intend to increase the sample of star clusters in the west halo of the SMC with homogeneous age, metallicity, and distance derivations to allow a better determination of age and metallicity gradients in this region. Positions are compared with the orbital plane of the SMC from models. Methods. Comparisons of observed and synthetic V(BV) colour-magnitude diagrams were used to derive age, metallicity, distance, and reddening for star clusters in the SMC west halo. Observations were carried out using the 4.1 m SOAR telescope. Photometric completeness was determined through artificial star tests, and the members were selected by statistical comparison with a control field Results. We derived an age of 1.23 0.07 Gyr and [Fe=H] = 0:87 0:07 for the reference cluster NGC 152, compatible with literature parameters. Age and metallicity gradients are confirmed in the WH: 2.6 0.6 Gyr/ and 0.19 0.09 dex/ , respectively. The age-metallicity relation for the WH has a low dispersion in metallicity and is compatible with a burst model of chemical enrichment. All WH clusters seem to follow the same stellar distribution predicted by dynamical models, with the exception of AM-3, which should belong to the counter-bridge. Brück 6 is the youngest cluster in our sample. It is only 130 40 Myr old and may have been formed during the tidal interaction of SMC-LMC that created the WH and the Magellanic bridge. Conclusions.We suggest that it is crucial to split the SMC cluster population into groups: main body, wing and bridge, counter-bridge, and WH. This is the way to analyse the complex star formation and dynamical history of our neighbour. In particular, we show that the WH has clear age and metallicity gradients and an age-metallicity relation that is also compatible with the dynamical model that claims a tidal influence of the LMC on the SMC.
publishDate 2016
dc.date.issued.fl_str_mv 2016
dc.date.accessioned.fl_str_mv 2017-11-24T02:26:24Z
dc.type.driver.fl_str_mv Estrangeiro
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dc.identifier.issn.pt_BR.fl_str_mv 0004-6361
dc.identifier.nrb.pt_BR.fl_str_mv 001048051
identifier_str_mv 0004-6361
001048051
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dc.language.iso.fl_str_mv eng
language eng
dc.relation.ispartof.pt_BR.fl_str_mv Astronomy and astrophysics. Les Ulis. Vol. 591 (July 2016), A11, 16 p.
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
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