BPS CS 30301-0015 , the SIMBAD biblio

BPS CS 30301-0015 , the SIMBAD biblio (44 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.04.19CEST21:40:41


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Title First 3 Authors
2019A&A...621A.108A viz 108       D     X         3 59 ~ Binarity among CEMP-no stars: an indication of multiple formation pathways? ARENTSEN A., STARKENBURG E., SHETRONE M.D., et al.
2019A&A...623A.128H viz 18       D               1 100 ~ Abundances and kinematics of carbon-enhanced metal-poor stars in the Galactic halo. A new classification scheme based on Sr and Ba. HANSEN C.J., HANSEN T.T., KOCH A., et al.
2019ApJ...887..187B 90             C       1 4 ~ New s-process mechanism in rapidly rotating massive population II stars. BANERJEE P., HEGER A. and QIAN Y.-Z.
2018A&A...620A..63A 87           X         2 10 ~ Understanding the orbital periods of CEMP-s stars. ABATE C., POLS O.R. and STANCLIFFE R.J.
2018ApJ...865..120B 131           X C       2 9 2 New neutron-capture site in massive pop III and pop II stars' as a source for heavy elements in the early Galaxy. BANERJEE P., QIAN Y.-Z. and HEGER A.
2017A&A...607L...3C 214           X C       4 5 8 Are some CEMP-s stars the daughters of spinstars? CHOPLIN A., HIRSCHI R., MEYNET G., et al.
2017MNRAS.472..350R 43           X         1 13 ~ High-resolution spectroscopic observations of the new CEMP-s star CD -50°776. RORIZ M., PEREIRA C.B., DRAKE N.A., et al.
2016A&A...588A...3H 686       D   O X C       16 32 39 The role of binaries in the enrichment of the early Galactic halo. HANSEN T.T., ANDERSEN J., NORDSTROM B., et al.
2016ApJ...833...20Y viz 17       D               2 304 44 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.
2015A&A...581A..22A viz 99       D       C       8 66 23 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...583A..77L 41           X         1 24 14 Post-AGB stars in the Magellanic Clouds and neutron-capture processes in AGB stars. LUGARO M., CAMPBELL S.W., VAN WINCKEL H., et al.
2015ApJ...807..173H 16       D               2 53 46 An elemental assay of very, extremely, and ultra-metal-poor stars. HANSEN T., HANSEN C.J., CHRISTLIEB N., et al.
2014ApJ...788..180C viz 16       D               1 329 37 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 97 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.
2013ApJ...762...26Y viz 16       D               1 198 138 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...28N 17       D               1 106 118 The most metal-poor stars. IV. The two populations with [Fe/H] ≲ -3.0. NORRIS J.E., YONG D., BESSELL M.S., et al.
2013ApJ...770..104P 17       D               1 33 37 Metal-poor stars observed with the Magellan telescope. I. Constraints on progenitor mass and metallicity of AGB stars undergoing s-process nucleosynthesis. PLACCO V.M., FREBEL A., BEERS T.C., et al.
2012A&A...548A..34A viz 16       D               4 134 38 Elemental abundances and classification of carbon-enhanced metal-poor stars. ALLEN D.M., RYAN S.G., ROSSI S., et al.
2012MNRAS.422..849B 373       D S   X C F     7 97 76 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.
2012PASP..124..304L 16       D               1 34 2 Abundance analysis of r + s stars: r -process abundance comparison between r + s stars and r rich stars. LIANG S., LI H., SHEN S., et al.
2011MNRAS.412..843S viz 16       D               1 148 79 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.
2011MNRAS.418..284B viz 173       D     X         5 115 128 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.
2010A&A...509A..93M viz 16       D               2 181 137 A holistic approach to carbon-enhanced metal-poor stars. MASSERON T., JOHNSON J.A., PLEZ B., et al.
2007ApJ...655..492A viz 1 70 187 Carbon-enhanced metal-poor stars. I. Chemical compositions of 26 stars. AOKI W., BEERS T.C., CHRISTLIEB N., et al.
2007ApJ...658..367K viz 15       D               1 122 83 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.
2007ApJS..168..128B viz 15       D               1851 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.
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.
2006A&A...451..651J 44 76 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.
2006A&A...455.1059M 4         O           8 66 CS 30322-023: an ultra metal-poor TP-AGB star? MASSERON T., VAN ECK S., FAMAEY B., 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.
2006AJ....132..137C viz 1 30 85 Carbon stars in the Hamburg/ESO survey: abundances. COHEN J.G., McWILLIAM A., SHECTMAN S., et al.
2006ApJ...642.1075Z 15 20 Neutron-capture elements in the s- and r-process-rich stars: constraints on neutron-capture nucleosynthesis processes. ZHANG B., MA K. and ZHOU G.
2006MmSAI..77..985B 33 10 s-Process in low metallicity Pb stars. BISTERZO S., GALLINO R., STRANIERO O., et al.
2005A&A...429.1031B 3 11 66 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 23 157 The binary frequency among carbon-enhanced, s-process-rich, metal-poor stars. LUCATELLO S., TSANGARIDES S., BEERS T.C., et al.
2005ApJ...635..349R 1 20 52 The origins of two classes of carbon-enhanced, metal-poor stars. RYAN S.G., AOKI W., NORRIS J.E., et al.
2004A&A...413.1073S 1 31 77 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.
2004MmSAI..75..706D 14 10 Lead and s-process elements in stars of various metallicities: AGB predictions compared with observation. DELAUDE D., GALLINO R., CRISTALLO S., et al.
2004MmSAI..75..772T 17 13 On the binarity of carbon-enhanced, metal-poor stars. TSANGARIDES S., RYAN S.G. and BEERS T.C.
2003AJ....125..875L 1 23 84 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.
2002ApJ...580.1149A 5 8 143 A Subaru/High dispersion spectrograph study of lead (Pb) abundances in eight s-process element-rich, metal-poor stars. AOKI W., RYAN S.G., NORRIS J.E., et al.
2002PASJ...54..933A 1 13 40 Subaru/HDS study of extremely metal-poor star CS 29498-043 : abundance analysis details and comparison with other carbon-rich objects. AOKI W., NORRIS J.E., RYAN S.G., et al.

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2021.04.19-21:40:41

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