HE 0007-1832 , the SIMBAD biblio

HE 0007-1832 , the SIMBAD biblio (19 results) C.D.S. - SIMBAD4 rel 1.7 - 2020.08.04CEST04:45:29


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Title First 3 Authors
2020ApJ...891...39Y 20       D               1 31 ~ Dynamical relics of the ancient galactic halo. YUAN Z., MYEONG G.C., BEERS T.C., et al.
2017A&A...605A..63C 44           X         1 24 5 Pre-supernova mixing in CEMP-no source stars. CHOPLIN A., EKSTROM S., MEYNET G., 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...576A..56M 17       D               1 44 35 The first stars: CEMP-no stars and signatures of spinstars. MAEDER A., MEYNET G. and CHIAPPINI C.
2015A&A...579A..28B viz 85             C       1 46 68 TOPoS. II. On the bimodality of carbon abundance in CEMP stars. Implications on the early chemical evolution of galaxies. BONIFACIO P., CAFFAU E., SPITE M., et al.
2015A&A...580A..32M 59       D     X         2 48 13 The first stars: a classification of CEMP-no stars. MAEDER A. and MEYNET G.
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...778...56C viz 16       D               6 144 85 Normal and outlying populations of the Milky Way stellar halo at [Fe/H] ←2. COHEN J.G., CHRISTLIEB N., THOMPSON I., 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.
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.
2010A&A...521A..10L 19       D               1 4 31 The stellar content of the Hamburg/ESO survey. VI. Metallicity distribution of main-sequence turnoff stars in the Galactic halo. LI H.N., CHRISTLIEB N., SCHOERCK T., et al.
2008ApJ...678.1351A 16       D               1 27 60 Carbon-enhanced metal-poor stars. III. Main-sequence turnoff stars from the SDSS SEGUE sample. AOKI W., BEERS T.C., SIVARANI T., 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.
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.
2005A&A...434.1117P 2         O           14 62 Analysis of the carbon-rich very metal-poor dwarf G77-61. PLEZ B. and COHEN J.G.
2004ApJ...612.1107C 2 22 112 Abundances in very metal-poor dwarf stars. COHEN J.G., CHRISTLIEB N., McWILLIAM A., et al.
2003ApJ...588.1082C 3 13 81 Abundance analysis of HE 2148-1247, a star with extremely enhanced neutron capture elements. COHEN J.G., CHRISTLIEB N., QIAN Y.-Z., et al.

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2020.08.04-04:45:29

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