HERBS I: Metallicity and alpha enhancement along the Galactic bulge minor axis
| dc.contributor.author | Duong, Ly | |
| dc.contributor.author | Asplund, Martin | |
| dc.contributor.author | Nataf, David M. | |
| dc.contributor.author | Freeman, Kenneth | |
| dc.contributor.author | Ness, Melissa | |
| dc.contributor.author | Howes, L. M. | |
| dc.date.accessioned | 2021-05-10T01:23:51Z | |
| dc.date.available | 2021-05-10T01:23:51Z | |
| dc.date.issued | 2019-04-20 | |
| dc.date.updated | 2020-12-27T07:26:20Z | |
| dc.description.abstract | To better understand the origin and evolution of the Milky Way bulge, we have conducted a survey of bulge red giant branch and clump stars using the High Efficiency and Resolution Multi-Element Spectrograph on the Anglo–Australian Telescope. We targeted ARGOS survey stars with predetermined bulge memberships, covering the full metallicity distribution function. The spectra have signal-to-noise ratios comparable to, and were analysed using the same methods as the GALAH survey. In this work, we present the survey design, stellar parameters, distribution of metallicity, and alpha-element abundances along the minor bulge axis at latitudes b = −10◦, − 7.5◦, and −5◦. Our analysis of ARGOS stars indicates that the centroids of ARGOS metallicity components should be located ≈0.09 dex closer together. The vertical distribution of α-element abundances is consistent with the varying contributions of the different metallicity components. Closer to the plane, alpha abundance ratios are lower as the metal-rich population dominates. At higher latitudes, the alpha abundance ratios increase as the number of metal-poor stars increases. However, we find that the trend of alpha-enrichment with respect to metallicity is independent of latitude. Comparison of our results with those of GALAH DR2 revealed that for [Fe/H] ≈ −0.8, the bulge shares the same abundance trend as the high-α disc population. However, the metal-poor bulge population ([Fe/H] −0.8) show enhanced alpha abundance ratios compared to the disc/halo. These observations point to fairly rapid chemical evolution in the bulge, and that the metal-poor bulge population does not share the same similarity with the disc as the more metal-rich populations. | en_AU |
| dc.description.sponsorship | LD, MA, and KCF acknowledge funding from the Australian Research Council (projects FL110100012 and DP160103747). LD gratefully acknowledges a scholarship from Zonta International District 24. DMN was supported by the Allan C. and Dorothy H. Davis Fellowship. LMH was supported by the project grant ‘The New Milky Way’ from the Knut and Alice Wallenberg foundation. MA’s work was conducted as part of the research by Australian Research Council Centre of Excellence for All Sky Astrophysics in 3 Dimensions (ASTRO 3D), through project number CE170100013. | en_AU |
| dc.format.mimetype | application/pdf | en_AU |
| dc.identifier.issn | 0035-8711 | en_AU |
| dc.identifier.uri | http://hdl.handle.net/1885/232561 | |
| dc.language.iso | en_AU | en_AU |
| dc.provenance | https://v2.sherpa.ac.uk/id/publication/24618..."Published version can be made open access on institutional repository" from SHERPA/RoMEO site (as at 10.5.2021). | en_AU |
| dc.publisher | Blackwell Publishing Ltd | en_AU |
| dc.relation | http://purl.org/au-research/grants/arc/FL110100012 | en_AU |
| dc.relation | http://purl.org/au-research/grants/arc/DP160103747 | en_AU |
| dc.relation | http://purl.org/au-research/grants/arc/CE170100013 | en_AU |
| dc.rights | © 2019 The Author(s) | en_AU |
| dc.source | Monthly Notices of the Royal Astronomical Society | en_AU |
| dc.subject | stars: abundances | en_AU |
| dc.subject | stars: general | en_AU |
| dc.subject | Galaxy: bulge | en_AU |
| dc.subject | Galaxy: evolution | en_AU |
| dc.subject | Galaxy: formation | en_AU |
| dc.title | HERBS I: Metallicity and alpha enhancement along the Galactic bulge minor axis | en_AU |
| dc.type | Journal article | en_AU |
| dcterms.accessRights | Open Access | en_AU |
| dcterms.dateAccepted | 2019-04-15 | |
| local.bibliographicCitation.issue | 3 | en_AU |
| local.bibliographicCitation.lastpage | 3603 | en_AU |
| local.bibliographicCitation.startpage | 3586 | en_AU |
| local.contributor.affiliation | Duong, Ly, College of Science, ANU | en_AU |
| local.contributor.affiliation | Asplund, Martin, College of Science, ANU | en_AU |
| local.contributor.affiliation | Nataf, David M, Johns Hopkins University | en_AU |
| local.contributor.affiliation | Freeman, Kenneth, College of Science, ANU | en_AU |
| local.contributor.affiliation | Ness, Melissa, Columbia University | en_AU |
| local.contributor.affiliation | Howes, L. M., Lund Observatory | en_AU |
| local.contributor.authoruid | Duong, Ly, u4677579 | en_AU |
| local.contributor.authoruid | Asplund, Martin, u4042723 | en_AU |
| local.contributor.authoruid | Freeman, Kenneth, u7000399 | en_AU |
| local.description.notes | Imported from ARIES | en_AU |
| local.identifier.absfor | 020104 - Galactic Astronomy | en_AU |
| local.identifier.absfor | 020110 - Stellar Astronomy and Planetary Systems | en_AU |
| local.identifier.absseo | 970102 - Expanding Knowledge in the Physical Sciences | en_AU |
| local.identifier.ariespublication | u3102795xPUB4779 | en_AU |
| local.identifier.citationvolume | 486 | en_AU |
| local.identifier.doi | 10.1093/mnras/stz1104 | en_AU |
| local.identifier.thomsonID | WOS:000474903500050 | |
| local.publisher.url | https://academic.oup.com/ | en_AU |
| local.type.status | Published Version | en_AU |
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