BPS CS 22963-0004 , the SIMBAD biblio

BPS CS 22963-0004 , the SIMBAD biblio (27 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST05:13:21


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Title First 3 Authors
1991ApJS...76.1001P viz 1762 52 Photoelectric UBV photometry of stars selected in the HK objective-prism survey. PRESTON G.W., SHECTMAN S.A. and BEERS T.C.
1992AJ....103.1987B viz 1024 532 A search for stars of very low metal abundance. II. BEERS T.C., PRESTON G.W. and SHECTMAN S.A.
1995ApJS...96..175B viz 1810 175 Kinematics of metal-poor stars in the Galaxy. BEERS T.C. and SOMMER-LARSEN J.
1996A&AS..117..317S viz 83 32 uvby-β photometry of high-velocity and metal-poor stars. VIII. Stars of very low metal abundance. SCHUSTER W.J., NISSEN P.E., PARRAO L., et al.
2000AJ....119.2866B viz 2011 171 Kinematics of metal-poor stars in the Galaxy. II. Proper motions for a large nonkinematically selected sample. BEERS T.C., CHIBA M., YOSHII Y., et al.
2004A&A...422..527S viz 500 36 uvby-β photometry of high-velocity and metal-poor stars. X. Stars of very low metal abundance: Observations, reddenings, metallicities, classifications, distances, and relative ages. SCHUSTER W.J., BEERS T.C., MICHEL R., et al.
2004AJ....128.2402L viz 135 16 Abundances of extremely metal-poor star candidates. LAI D.K., BOLTE M., JOHNSON J.A., et al.
2008ApJ...681.1524L viz 17       D               10 60 270 Detailed abundances for 28 metal-poor stars: stellar relics in the Milky Way. LAI D.K., BOLTE M., JOHNSON J.A., et al.
2009AJ....137..272R viz 15       D               1 737 45 Chemical inhomogeneities in the Milky Way stellar halo. ROEDERER I.U.
2010A&A...515A.111S viz 15       D               1 17230 227 The PASTEL catalogue of stellar parameters. SOUBIRAN C., LE CAMPION J.-F., CAYREL DE STROBEL G., et al.
2011MNRAS.412..843S viz 38           X         1 148 109 The stellar abundances for galactic archaeology (SAGA) data base – II. Implications for mixing and nucleosynthesis in extremely metal-poor stars and chemical enrichment of the galaxy. SUDA T., YAMADA S., KATSUTA Y., et al.
2013ApJ...762...26Y viz 16       D               1 198 263 The most metal-poor stars. II. Chemical abundances of 190 metal-poor stars including 10 new stars with [Fe/H] ≤ -3.5. YONG D., NORRIS J.E., BESSELL M.S., et al.
2013ApJ...762...27Y viz 16       D               1 88 106 The most metal-poor stars. III. The metallicity distribution function and carbon-enhanced metal-poor fraction. YONG D., NORRIS J.E., BESSELL M.S., et al.
2013ApJ...762...28N 16       D               1 106 171 The most metal-poor stars. IV. The two populations with [Fe/H] ≲ -3.0. NORRIS J.E., YONG D., BESSELL M.S., et al.
2014ApJ...785...98T 253       D     X         7 55 110 Abundance profiling of extremely metal-poor stars and supernova properties in the early universe. TOMINAGA N., IWAMOTO N. and NOMOTO K.
2014AJ....147..136R viz 16       D               2 317 336 A search for stars of very low metal abundance. VI. Detailed abundances of 313 metal-poor stars. ROEDERER I.U., PRESTON G.W., THOMPSON I.B., et al.
2014ApJ...788..180C viz 16       D               1 329 52 Carbon-enhanced metal-poor stars: CEMP-s and CEMP-no subclasses in the halo system of the Milky Way. CAROLLO D., FREEMAN K., BEERS T.C., et al.
2014ApJ...797...21P viz 16       D               2 606 226 Carbon-enhanced metal-poor star frequencies in the galaxy: corrections for the effect of evolutionary status on carbon abundances. PLACCO V.M., FREBEL A., BEERS T.C., et al.
2016A&A...591A.118S viz 16       D               2 31406 141 The PASTEL catalogue: 2016 version. SOUBIRAN C., LE CAMPION J.-F., BROUILLET N., et al.
2018ApJ...857...46I viz 16       D               1 205 88 The initial mass function of the first stars inferred from extremely metal-poor stars. ISHIGAKI M.N., TOMINAGA N., KOBAYASHI C., et al.
2019ApJ...871..146F 17       D               1 33 17 Chemical abundance signature of J0023+0307 a second-generation main-sequence star with [Fe/H] < -6. FREBEL A., JI A.P., EZZEDDINE R., et al.
2019MNRAS.484.2166S 101       D         F     5 45 69 Tracing the formation of the Milky Way through ultra metal-poor stars. SESTITO F., LONGEARD N., MARTIN N.F., et al.
2020A&A...636A.115D 17       D               2 94 38 Reviving old controversies: is the early Galaxy flat or round?. Investigations into the early phases of the Milky Way's formation through stellar kinematics and chemical abundances. DI MATTEO P., SPITE M., HAYWOOD M., et al.
2020ApJ...900..106O viz 17       D               1 314 ~ Vanadium abundance derivations in 255 metal-poor stars. OU X., ROEDERER I.U., SNEDEN C., et al.
2021MNRAS.503.2539C viz 17       D               1 479 34 Exploring the Galaxy's halo and very metal-weak thick disc with SkyMapper and Gaia DR2. CORDONI G., DA COSTA G.S., YONG D., et al.
2021ApJ...912L..32P 48           X         1 4 17 SPLUS J210428.01-004934.2 an ultra metal-poor star identified from narrowband photometry. PLACCO V.M., ROEDERER I.U., LEE Y.S., et al.
2024ApJS..270...28R 20       D               1 54 ~ Zero and Extremely Low-metallicity Rotating Massive Stars: Evolution, Explosion, and Nucleosynthesis Up to the Heaviest Nuclei. ROBERTI L., LIMONGI M. and CHIEFFI A.

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