HE 1305+0007 , the SIMBAD biblio

HE 1305+0007 , the SIMBAD biblio (30 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST16:05:37


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Title First 3 Authors
2001A&A...375..366C viz 410 121 The stellar content of the Hamburg/ESO survey. II. A large, homogeneously-selected sample of high latitude carbon stars. CHRISTLIEB N., GREEN P.J., WISOTZKI L., et al.
2003MNRAS.344..307L viz 63299 194 The Millennium Galaxy Catalogue: 16 ≤BMGC< 24 galaxy counts and the calibration of the local galaxy luminosity function. LISKE J., LEMON D.J., DRIVER S.P., et al.
2006MNRAS.372..343G 1 11 38 A high-resolution spectral analysis of three carbon-enhanced metal-poor stars. GOSWAMI A., AOKI W., BEERS T.C., 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.
2007AJ....133.1193B 1 10 28 Near-infrared spectroscopy of carbon-enhanced metal-poor stars. I. A SOAR/OSIRIS pilot study. BEERS T.C., SIVARANI T., MARSTELLER B., et al.
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.
2007BASI...35..339G 68 7 Low-resolution spectroscopy of high galactic latitude objects: A search for CH stars. GOSWAMI A., BAMA P., SHANTIKUMAR N.S., 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.402.1111G 15       D               1 109 23 The CH fraction of carbon stars at high galactic latitudes. GOSWAMI A., KARINKUZHI D. and SHANTIKUMAR N.S.
2010MNRAS.404..253G viz 702       D     X C       18 19 21 HD209621: abundances of neutron-capture elements. GOSWAMI A. and AOKI W.
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.
2010ApJ...722L..90G 168       D S   X         4 21 4 Evidence of v-band polarimetric separation of carbon stars at high galactic latitude. GOSWAMI A., KARTHA S.S. and SEN A.K.
2011ApJ...729...40L 16       D               4 17 44 Fluorine and sodium in c-rich low-metallicity stars. LUCATELLO S., MASSERON T., JOHNSON J.A., et al.
2011MNRAS.412..843S viz 15       D               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.
2011MNRAS.418..284B viz 323       D     X         9 115 191 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.
2012MNRAS.422..849B 480       D S   X C F     10 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.
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.
2012PASP..124..304L 15       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.
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.
2015MNRAS.446.2348K viz 40           X         1 20 8 Chemical analysis of CH stars - II. Atmospheric parameters and elemental abundances. KARINKUZHI D. and GOSWAMI A.
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.
2016A&A...591A.118S viz 16       D               1 31406 141 The PASTEL catalogue: 2016 version. SOUBIRAN C., LE CAMPION J.-F., BROUILLET N., et al.
2016ApJ...831..171H 101       D       C       3 23 126 The intermediate neutron-capture process and carbon-enhanced metal-poor stars. HAMPEL M., STANCLIFFE R.J., LUGARO M., 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.
2016ApJ...833..181C 178       D     X         5 30 39 Constraints of the physics of low-mass AGB stars from CH and CEMP stars. CRISTALLO S., KARINKUZHI D., GOSWAMI A., et al.
2019A&A...621A.108A viz 59       D     X         2 59 49 Binarity among CEMP-no stars: an indication of multiple formation pathways? ARENTSEN A., STARKENBURG E., SHETRONE M.D., et al.
2019ApJ...887...11H 17       D               2 34 ~ Learning about the intermediate neutron-capture process from lead abundances. HAMPEL M., KARAKAS A.I., STANCLIFFE R.J., et al.
2020MNRAS.498.3549M 2171     A D S   X C       50 15 ~ Constraining nucleosynthesis in two CEMP progenitors using fluorine. MURA-GUZMAN A., YONG D., ABATE 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.
2022A&A...668A.100G viz 45         O X         1 5 2 Nucleosynthetic yields of intermediate-mass primordial to extremely metal-poor stars. GIL-PONS P., DOHERTY C.L., CAMPBELL S.W., et al.

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