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  • The AMBRE project: Iron-pea... The AMBRE project: Iron-peak elements in the solar neighbourhood
    Mikolaitis, Š.; de Laverny, P.; Recio–Blanco, A. ... Astronomy & astrophysics, 04/2017, Volume: 600
    Journal Article
    Peer reviewed
    Open access

    Context. The pattern of chemical abundance ratios in stellar populations of the Milky Way is a fingerprint of the Galactic chemical history. In order to interpret such chemical fossils of Galactic ...
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  • The AMBRE project: The thic... The AMBRE project: The thick thin disk and thin thick disk of the Milky Way
    Hayden, M. R.; Recio-Blanco, A.; de Laverny, P. ... Astronomy & astrophysics, 12/2017, Volume: 608
    Journal Article
    Peer reviewed
    Open access

    We analyze 494 main sequence turnoff and subgiant stars from the AMBRE:HARPS survey. These stars have accurate astrometric information from Gaia DR1, providing reliable age estimates with relative ...
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  • Gaia FGK benchmark stars: M... Gaia FGK benchmark stars: Metallicity
    Jofré, P.; Heiter, U.; Soubiran, C. ... Astronomy and astrophysics (Berlin), 04/2014, Volume: 564
    Journal Article
    Peer reviewed

    Context. To calibrate automatic pipelines that determine atmospheric parameters of stars, one needs a sample of stars, or “benchmark stars”, with well-defined parameters to be used as a reference. ...
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  • GLOBAL AND NONGLOBAL PARAME... GLOBAL AND NONGLOBAL PARAMETERS OF HORIZONTAL-BRANCH MORPHOLOGY OF GLOBULAR CLUSTERS
    Milone, A P; Marino, A F; Dotter, A ... Astrophysical journal/˜The œAstrophysical journal, 04/2014, Volume: 785, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    The horizontal-branch (HB) morphology of globular clusters (GCs) is mainly determined by metallicity. However, the fact that GCs with almost the same metallicity exhibit different HB morphologies ...
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  • Automated derivation of ste... Automated derivation of stellar atmospheric parameters and chemical abundances: the MATISSE algorithm
    Recio-Blanco, A.; Bijaoui, A.; De Laverny, P. Monthly Notices of the Royal Astronomical Society, 07/2006, Volume: 370, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    We present an automated procedure for the derivation of atmospheric parameters (T eff, log g, M/H) and individual chemical abundances from stellar spectra. The MATrix Inversion for Spectral SynthEsis ...
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  • The AMBRE project: Constrai... The AMBRE project: Constraining the lithium evolution in the Milky Way
    Guiglion, G.; de Laverny, P.; Recio-Blanco, A. ... Astronomy & astrophysics, 11/2016, Volume: 595
    Journal Article
    Peer reviewed
    Open access

    Context. The chemical evolution of lithium in the Milky Way represents a major problem in modern astrophysics. Indeed, lithium is, on the one hand, easily destroyed in stellar interiors, and, on the ...
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  • The Gaia-ESO Survey: the ch... The Gaia-ESO Survey: the chemical structure of the Galactic discs from the first internal data release
    Mikolaitis, Š.; Hill, V.; Recio–Blanco, A. ... Astronomy and astrophysics (Berlin), 12/2014, Volume: 572
    Journal Article
    Peer reviewed

    Aims. Until recently, most high-resolution spectroscopic studies of the Galactic thin and thick discs were mostly confined to objects in the solar vicinity. Here we aim at enlarging the volume in ...
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  • The Gaia-ESO Survey: Explor... The Gaia-ESO Survey: Exploring the complex nature and origins of the Galactic bulge populations
    Rojas-Arriagada, A.; Recio-Blanco, A.; de Laverny, P. ... Astronomy & astrophysics, 05/2017, Volume: 601
    Journal Article
    Peer reviewed
    Open access

    Context. As observational evidence steadily accumulates, the nature of the Galactic bulge has proven to be rather complex: the structural, kinematic, and chemical analyses often lead to contradictory ...
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  • The AMBRE Project: r-proces... The AMBRE Project: r-process elements in the Milky Way thin and thick discs
    Guiglion, G.; de Laverny, P.; Recio-Blanco, A. ... Astronomy & astrophysics, 11/2018, Volume: 619
    Journal Article
    Peer reviewed
    Open access

    Context. The chemical evolution of neutron capture elements in the Milky Way disc is still a matter of debate. There is a lack of statistically significant catalogues of such element abundances, ...
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