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HE 0057-5959 , the SIMBAD biblio (33 results) | C.D.S. - SIMBAD4 rel 1.8 - 2024.06.14CEST13:51:44 |
Bibcode/DOI | Score |
in Title|Abstract| Keywords |
in a table | in teXt, Caption, ... | Nb occurence | Nb objects in ref |
Citations (from ADS) |
Title | First 3 Authors |
---|---|---|---|---|---|---|---|---|---|
2013ApJ...762...25N | 16 | D | 1 | 74 | 50 | The most metal-poor stars. I. Discovery, data, and atmospheric parameters. | NORRIS J.E., BESSELL M.S., YONG D., et al. | ||
2013ApJ...762...26Y | 328 | D | X C | 8 | 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 | 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 | 328 | D | S X | 8 | 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 | 292 | D | X C | 7 | 55 | 110 | Abundance profiling of extremely metal-poor stars and supernova properties in the early universe. | TOMINAGA N., IWAMOTO N. and NOMOTO K. | |
2014ApJ...788..180C | 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...794..100M | 42 | X | 1 | 4 | 28 | The origin of the most iron-poor star. | MARASSI S., CHIAKI G., SCHNEIDER R., et al. | ||
2014ApJ...797...21P | 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..56M | 16 | D | 1 | 44 | 35 | The first stars: CEMP-no stars and signatures of spinstars. | MAEDER A., MEYNET G. and CHIAPPINI C. | ||
2015ApJ...807..171J | 16 | D | 2 | 131 | 106 | High-resolution spectroscopic study of extremely metal-poor star candidates from the SkyMapper survey. | JACOBSON H.R., KELLER S., FREBEL A., et al. | ||
2015A&A...580A..32M | 56 | D | X | 2 | 48 | 13 | The first stars: a classification of CEMP-no stars. | MAEDER A. and MEYNET G. | |
2015ApJ...809..136P | 95 | D | X | 3 | 24 | 39 | Metal-poor stars observed with the Magellan telescope. III. New extremely and ultra metal-poor stars from SDSS/SEGUE and insights on the formation of ultra metal-poor stars. | PLACCO V.M., FREBEL A., LEE Y.S., et al. | |
2016A&A...591A.118S | 16 | D | 1 | 31407 | 141 | The PASTEL catalogue: 2016 version. | SOUBIRAN C., LE CAMPION J.-F., BROUILLET N., et al. | ||
2016A&A...593A..36C | 56 | D | X | 2 | 14 | 5 | Constraints on CEMP-no progenitors from nuclear astrophysics. | CHOPLIN A., MAEDER A., MEYNET G., et al. | |
2016ApJ...833...20Y | 16 | D | 2 | 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...21P | 58 | D | X | 2 | 13 | 33 | Observational constraints on first-star nucleosynthesis. II. Spectroscopy of an ultra metal-poor CEMP-no star. | PLACCO V.M., FREBEL A., BEERS T.C., et al. | |
2017MNRAS.468..418F | 97 | D | F | 3 | 51 | 15 | The mass distribution of Population III stars. | FRASER M., CASEY A.R., GILMORE G., et al. | |
2017ApJ...847..142E | 301 | D | X | 8 | 25 | 19 | Ultra-metal-poor stars: spectroscopic determination of stellar atmospheric parameters using iron Non-LTE line abundances. | EZZEDDINE R., FREBEL A. and PLEZ B. | |
2017A&A...605A..63C | 16 | D | 1 | 24 | 5 | Pre-supernova mixing in CEMP-no source stars. | CHOPLIN A., EKSTROM S., MEYNET G., et al. | ||
2018ApJ...857...46I | 58 | D | X | 2 | 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. | |
2019A&A...621A.108A | 226 | D | X | 6 | 59 | 49 | Binarity among CEMP-no stars: an indication of multiple formation pathways? | ARENTSEN A., STARKENBURG E., SHETRONE M.D., 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. | |
2019MNRAS.485.3527S | 351 | D | X | 9 | 19 | ~ | Ultra metal-poor stars: improved atmospheric parameters and NLTE abundances of magnesium and calcium. | SITNOVA T.M., MASHONKINA L.I., EZZEDDINE R., et al. | |
2019ApJ...879...37N | 17 | D | 1 | 74 | 7 | The most metal-poor stars. V. The CEMP-no stars in 3D and non-LTE. | NORRIS J.E. and YONG D. | ||
2019MNRAS.489.5900D | 42 | X | 1 | 205 | 44 | The SkyMapper DR1.1 search for extremely metal-poor stars. | DA COSTA G.S., BESSELL M.S., MACKEY A.D., et al. | ||
2019MNRAS.490.2241A | 17 | D | 1 | 1012 | 50 | The Pristine survey - VI. The first three years of medium-resolution follow-up spectroscopy of Pristine EMP star candidates. | AGUADO D.S., YOUAKIM K., GONZALEZ HERNANDEZ J.I., et al. | ||
2019A&A...632A..62C | 84 | C | 1 | 261 | ~ | Inferring the velocity of early massive stars from the abundances of extremely metal-poor stars. | CHOPLIN A., TOMINAGA N. and ISHIGAKI M.N. | ||
2020A&A...636A.115D | 17 | D | 2 | 93 | 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. | ||
2021MNRAS.503.2539C | 17 | D | 2 | 478 | 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. | ||
2022A&A...663A...4S | 18 | D | 1 | 14206 | 7 | Assessment of [Fe/H] determinations for FGK stars in spectroscopic surveys. | SOUBIRAN C., BROUILLET N. and CASAMIQUELA L. | ||
2023A&A...679A..72M | 19 | D | 1 | 56 | ~ | The 12C/13C isotopic ratio at the dawn of chemical evolution. | MOLARO P., AGUADO D.S., CAFFAU E., et al. | ||
2024ApJS..270...28R | 20 | D | 2 | 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. |