HE 0024-2523 , the SIMBAD biblio

HE 0024-2523 , the SIMBAD biblio (68 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST08:58:54


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Title First 3 Authors
2002A&A...393..215V 8 6 153 Yields from low metallicity, intermediate mass AGB stars: Their role for the CNO and lithium abundances in Globular Cluster stars. VENTURA P., D'ANTONA F. and MAZZITELLI I.
2002AJ....124..470C 17 44 Stellar archaeology: a Keck pilot program on extremely metal-poor stars from the Hamburg/ESO survey. I. Stellar parameters. COHEN J.G., CHRISTLIEB N., BEERS T.C., et al.
2002AJ....124..481C 3 14 126 Stellar archaeology: a Keck pilot program on extremely metal-poor stars from the Hamburg/ESO survey. II. Abundance analysis. CARRETTA E., GRATTON R., COHEN J.G., et al.
2003AJ....125..875L 74 T                   23 104 Stellar archaeology: a Keck pilot program on extremely metal-poor stars from the Hamburg/ESO survey. III. The lead (Pb) star
HE 0024-2523.
LUCATELLO S., GRATTON R., COHEN J.G., et al.
2003ApJ...588.1082C 2 13 102 Abundance analysis of HE 2148-1247, a star with extremely enhanced neutron capture elements. COHEN J.G., CHRISTLIEB N., QIAN Y.-Z., et al.
2003ApJ...588.1099Q 2 10 71 Stellar sources for heavy r-process nuclei. QIAN Y.-Z. and WASSERBURG G.J.
2003ApJ...592..504S 28 66 Binary blue metal-poor stars: evidence for asymptotic giant branch mass transfer. SNEDEN C., PRESTON G.W. and COWAN J.J.
2004A&A...413.1073S 1 31 96 First stars. IV. CS 29497-030: Evidence for operation of the s-process at very low metallicity. SIVARANI T., BONIFACIO P., MOLARO P., et al.
2004ApJ...605..425H 11 3 100 Dredge-up and envelope burning in intermediate-mass giants of very low metallicity. HERWIG F.
2004ApJ...605..462J 1 13 57 The s-process in metal-poor stars: abundances for 22 neutron-capture elements in CS 31062-050. JOHNSON J.A. and BOLTE M.
2004ApJ...611..476S 10 6 190 Is He 0107-5240 a primordial star? The characteristics of extremely metal-poor carbon-rich stars. SUDA T., AIKAWA M., MACHIDA M.N., et al.
2004Msngr.117...40C 24 5 The stellar content of the Hamburg/ESO survey. CHRISTLIEB N., REIMERS D. and WISOTZKI L.
2005A&A...429.1031B 2 11 84 New analysis of the two carbon-rich stars CS 22948-27 and CS 29497-34: Binarity and neutron capture elements. BARBUY B., SPITE M., SPITE F., et al.
2005AJ....130.2804R viz 166 34 Estimation of carbon abundances in metal-poor stars. I. Application to the strong G-band stars of Beers, Preston, and Shectman. ROSSI S., BEERS T.C., SNEDEN C., et al.
2005ApJ...625..825L 3 23 265 The binary frequency among carbon-enhanced, s-process-rich, metal-poor stars. LUCATELLO S., TSANGARIDES S., BEERS T.C., et al.
2005ApJ...626..446R viz 211 174 The effective temperature scale of FGK stars. I. Determination of temperatures and angular diameters with the infrared flux method. RAMIREZ I. and MELENDEZ J.
2005ApJ...635..349R 20 52 The origins of two classes of carbon-enhanced, metal-poor stars. RYAN S.G., AOKI W., NORRIS J.E., et al.
2005RMxAC..23...35S 9 1 Leaded metal-poor stars. SNEDEN C. and IVANS I.
2006A&A...451..651J 1 44 134 The Hamburg/ESO R-process enhanced star survey (HERES). III. HE 0338-3945 and the formation of the r + s stars. JONSELL K., BARKLEM P.S., GUSTAFSSON B., et al.
2006AJ....132..137C viz 1 30 100 Carbon stars in the Hamburg/ESO survey: abundances. COHEN J.G., McWILLIAM A., SHECTMAN S., et al.
2006A&A...459..125S 1 28 64 First stars X. The nature of three unevolved carbon-enhanced metal-poor stars. SIVARANI T., BEERS T.C., BONIFACIO P., et al.
2007ApJS..168..128B viz 15       D               1852 38 Broadband UBVRCIC photometry of horizontal-branch and metal-poor candidates from the HK and Hamburg/ESO surveys. I. BEERS T.C., FLYNN C., ROSSI S., et al.
2006MmSAI..77..985B 33 10 s-Process in low metallicity Pb stars. BISTERZO S., GALLINO R., STRANIERO O., et al.
2007MNRAS.375.1418M 17 3 Investigation of the single neutron exposure model for the s-process: the primary nature of the neutron source. MA K., CUI W. and ZHANG B.
2007ApJ...658..367K viz 15       D               1 122 103 The origin of carbon enhancement and the initial mass function of extremely metal-poor stars in the Galactic halo. KOMIYA Y., SUDA T., MINAGUCHI H., et al.
2007ApJ...658.1203J viz 15       D               69 54 A search for nitrogen-enhanced metal-poor stars. JOHNSON J.A., HERWIG F., BEERS T.C., et al.
2008ApJ...678.1351A 204       D     X         6 27 106 Carbon-enhanced metal-poor stars. III. Main-sequence turnoff stars from the SDSS SEGUE sample. AOKI W., BEERS T.C., SIVARANI T., et al.
2008ApJ...679.1549R viz 15       D               1 28 35 The Hobby-Eberly telescope Chemical Abundances of Stars in the Halo (CASH) project. I. The lithium-, s-, and r-enhanced metal-poor giant HKII 17435-00532. ROEDERER I.U., FREBEL A., SHETRONE M.D., et al.
2009A&A...496..791P 152           X C       3 14 14 High-resolution spectroscopic observations of two chemically peculiar metal-poor stars: HD 10613 and BD+04°2466. PEREIRA C.B. and DRAKE N.A.
2008ARA&A..46..241S 49           X         1 30 695 Neutron-capture elements in the early galaxy. SNEDEN C., COWAN J.J. and GALLINO R.
2009ApJ...698.1963R 38           X         1 57 66 The end of nucleosynthesis: production of lead and thorium in the early galaxy. ROEDERER I.U., KRATZ K.-L., FREBEL A., et al.
2009PASJ...61..909N 227           X         6 13 13 Oxygen and light-element synthesis by neutron-capture reactions in metal-free and extremely metal-poor AGB stars. NISHIMURA T., AIKAWA M., SUDA T., et al.
2010A&A...509A..93M viz 15       D               2 181 196 A holistic approach to carbon-enhanced metal-poor stars. MASSERON T., JOHNSON J.A., PLEZ B., et al.
2010MNRAS.403..505S 247       D S   X   F     5 9 59 The effects of thermohaline mixing on low-metallicity asymptotic giant branch stars. STANCLIFFE R.J.
2010A&A...512A..54C viz 15       D               1 465 610 An absolutely calibrated Teff scale from the infrared flux method. Dwarfs and subgiants. CASAGRANDE L., RAMIREZ I., MELENDEZ J., et al.
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 131       D     X         4 148 109 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.
2011A&A...533A..51P viz 38           X         1 35 17 Chemical abundances and kinematics of a sample of metal-rich barium stars. PEREIRA C.B., SALES SILVA J.V., CHAVERO C., et al.
2011MNRAS.418..284B viz 169       D     X         5 115 191 The s-process in low-metallicity stars – II. Interpretation of high-resolution spectroscopic observations with asymptotic giant branch models. BISTERZO S., GALLINO R., STRANIERO O., et al.
2012ApJ...751...14M 54       D     X         2 50 38 Lithium abundances in carbon-enhanced metal-poor stars. MASSERON T., JOHNSON J.A., LUCATELLO S., et al.
2012MNRAS.422..849B 93       D         F     2 97 85 The s-process in low-metallicity stars - III. Individual analysis of CEMP-s and CEMP-s/r with asymptotic giant branch models. BISTERZO S., GALLINO R., STRANIERO O., et al.
2011RvMP...83..157K 49           X         1 26 578 The s process: nuclear physics, stellar models, and observations. KAEPPELER F.
2012A&A...541A..48L 271         O X C       6 18 8 Abundances of neutron-capture elements in G24-25. A halo-population CH subgiant. LIU S., NISSEN P.E., SCHUSTER W.J., et al.
2012A&A...543A..58P 39           X         1 38 16 CD-62°1346: an extreme halo or hypervelocity CH star? PEREIRA C.B., JILINSKI E., DRAKE N.A., et al.
2013ApJ...762...26Y viz 172       D     X         5 198 263 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.
2012A&A...548A..34A viz 15       D               4 134 38 Elemental abundances and classification of carbon-enhanced metal-poor stars. ALLEN D.M., RYAN S.G., ROSSI S., et al.
2013ApJ...778..149M viz 41           X         1 28 147 Chemistry of the Sagittarius dwarf galaxy: a top-light initial mass function, outflows, and the r-process. McWILLIAM A., WALLERSTEIN G. and MOTTINI M.
2013ApJ...778...56C viz 16       D               2 144 157 Normal and outlying populations of the Milky Way stellar halo at [Fe/H] ←2. COHEN J.G., CHRISTLIEB N., THOMPSON I., et al.
2014ApJ...787..162H 41           X         1 14 56 Exploring the origin of lithium, carbon, strontium, and barium with four new ultra metal-poor stars. HANSEN T., HANSEN C.J., CHRISTLIEB N., 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.
2015A&A...576A.118A 453       D     X C       11 15 28 Carbon-enhanced metal-poor stars: a window on AGB nucleosynthesis and binary evolution. I. Detailed analysis of 15 binary stars with known orbital periods. ABATE C., POLS O.R., KARAKAS A.I., et al.
2015A&A...581A..22A viz 214       D     X         6 66 34 Carbon-enhanced metal-poor stars: a window on AGB nucleosynthesis and binary evolution. II. Statistical analysis of a sample of 67 CEMP-s stars. ABATE C., POLS O.R., IZZARD R.G., et al.
2015A&A...581A..62A 81             C       1 5 24 Modelling the observed properties of carbon-enhanced metal-poor stars using binary population synthesis. ABATE C., POLS O.R., STANCLIFFE R.J., et al.
2015ApJ...814..121H viz 16       D               1 26 9 The Chemical Abundances of Stars in the Halo (CASH) Project. III. A new classification scheme for carbon-enhanced metal-poor stars with s-process element enhancement. HOLLEK J.K., FREBEL A., PLACCO V.M., et al.
2016A&A...586A.151M 120           X C       2 17 11 To Ba or not to Ba: Enrichment in s-process elements in binary systems with WD companions of various masses. MERLE T., JORISSEN A., VAN ECK S., et al.
2016A&A...586A.158J viz 281     A D     X         8 48 33 Binary properties of CH and carbon-enhanced metal-poor stars. JORISSEN A., VAN ECK S., VAN WINCKEL H., et al.
2016A&A...588A...3H 83         O X         2 32 113 The role of binaries in the enrichment of the early Galactic halo. HANSEN T.T., ANDERSEN J., NORDSTROM B., 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.
2016MNRAS.459.4299D viz 40           X         1 213 50 Chemical abundances and kinematics of barium stars. DE CASTRO D.B., PEREIRA C.B., ROIG F., et al.
2016ApJ...833...20Y viz 16       D               1 304 147 Observational constraints on first-star nucleosynthesis. I. Evidence for multiple progenitors of CEMP-no stars. YOON J., BEERS T.C., PLACCO V.M., et al.
2017PASJ...69...24M 97       D     X         3 37 14 Lithium in CEMP-no stars: A new constraint on the lithium depletion mechanism in the early universe. MATSUNO T., AOKI W., SUDA T., et al.
2017MNRAS.469..774P 41           X         1 20 9 Chemical abundances and kinematics of TYC 5619-109-1. PEREIRA C.B., SMITH V.V., DRAKE N.A., et al.
2018ApJ...856L...2M 42           X         1 4 7 The binary dwarf carbon star SDSS J125017.90+252427.6. MARGON B., KUPFER T., BURDGE K., et al.
2018A&A...620A..63A 42           X         1 10 11 Understanding the orbital periods of CEMP-s stars. ABATE C., POLS O.R. and STANCLIFFE R.J.
2021ApJ...907...10L viz 17       D               1 1549 37 Dynamically tagged groups of very metal-poor halo stars from the HK and Hamburg/ESO surveys. LIMBERG G., ROSSI S., BEERS T.C., et al.
2021A&A...649A..49G viz 17       D               1 87 17 Spectroscopic study of CEMP-(s & r/s) stars. Revisiting classification criteria and formation scenarios, highlighting i-process nucleosynthesis. GOSWAMI P.P., RATHOUR R.S. and GOSWAMI A.
2021MNRAS.506.4877W 131           X         3 16 ~ Carbon-enhanced stars with short orbital and spin periods. WHITEHOUSE L.J., FARIHI J., HOWARTH I.D., et al.

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