BPS CS 31082-0001 , the SIMBAD biblio

BPS CS 31082-0001 , the SIMBAD biblio (251 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.04.14CEST07:30:17

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Title First 3 Authors
2021ApJ...908L...8A 150           X C       2 23 ~ Elevated r-process enrichment in Gaia Sausage and Sequoia. AGUADO D.S., BELOKUROV V., MYEONG G.C., et al.
2021ApJ...909...21H 20       D               1 33 ~ Reconstructing masses of merging neutron stars from stellar r-process abundance signatures. HOLMBECK E.M., FREBEL A., McLAUGHLIN G.C., et al.
2020A&A...634A..72S 19       D               1 83 ~ An empirical metallicity tracer in CEMP and C-normal stars. SINGH D., HANSEN C.J., BYRGESEN J.S., et al.
2020A&A...636A.115D 19       D               2 95 ~ 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.
2020A&A...638A..64P 140           X         3 10 ~ Trans-iron Ge, As, Se, and heavier elements in the dwarf metal-poor stars HD 19445, HD 84937, HD 94028, HD 140283, and HD 160617. PETERSON R.C., BARBUY B. and SPITE M.
2020ApJ...891...39Y 112       D     X         3 31 ~ Dynamical relics of the ancient galactic halo. YUAN Z., MYEONG G.C., BEERS T.C., et al.
2020ApJ...893...92W 140           X C       2 8 ~ Sandblasting the r-process: spallation of ejecta from Neutron star mergers. WANG X., FIELDS B.D., MUMPOWER M., et al.
2020ApJ...900..179K 140           X C       2 17 ~ The origin of elements from carbon to uranium. KOBAYASHI C., KARAKAS A.I. and LUGARO M.
2020ApJ...901..122F 140           X C       2 8 ~ Postmerger mass ejection of low-mass binary neutron stars. FUJIBAYASHI S., WANAJO S., KIUCHI K., et al.
2020ApJ...905...20R 439       D     X         10 53 ~ Metal-poor stars observed with the Southern African Large Telescope. RASMUSSEN K.C., ZEPEDA J., BEERS T.C., et al.
2020MNRAS.496.4507G 93           X         2 3 ~ Spectral line list of potential cosmochronological interest deduced from new calculations of radiative transition rates in singly ionized thorium (Th II). GAMRATH S., GODEFROID M.R., PALMERI P., et al.
2019A&A...627A.173V viz 224           X C       4 24 ~ Masses and ages for metal-poor stars. A pilot programme combining asteroseismology and high-resolution spectroscopic follow-up of RAVE halo stars. VALENTINI M., CHIAPPINI C., BOSSINI D., et al.
2019A&A...632A..62C 90             C       1 262 ~ Inferring the velocity of early massive stars from the abundances of extremely metal-poor stars. CHOPLIN A., TOMINAGA N. and ISHIGAKI M.N.
2019ApJ...879...47E 45           X         1 6 ~ Probing the production of actinides under different r-process conditions. EICHLER M., SAYAR W., ARCONES A., et al.
2019ApJ...882...40J 18       D               3 210 ~ The lanthanide fraction distribution in metal-poor stars: a test of neutron star mergers as the dominant r-process site. JI A.P., DROUT M.R. and HANSEN T.T.
2019MNRAS.484.3419D 45           X         1 2 ~ Stark broadening and shift of selected Ge II spectral lines. DOJIC D., SKOCIC M., BUKVIC S., et al.
2018A&A...611A..30S 1332     A     X C       30 21 8 Abundance patterns of the light neutron-capture elements in very and extremely metal-poor stars. SPITE F., SPITE M., BARBUY B., et al.
2018A&A...614A..68C viz 44           X         1 35 2 Investigation of a sample of carbon-enhanced metal-poor stars observed with FORS and GMOS. CAFFAU E., GALLAGHER A.J., BONIFACIO P., et al.
2018A&A...617A..56S 17       D               1 16 1 A CEMP-no star in the ultra-faint dwarf galaxy Pisces II. SPITE M., SPITE F., FRANCOIS P., et al.
2018AJ....155..256P viz 17       D               1 1700 3 Spectroscopic validation of low-metallicity stars from RAVE. PLACCO V.M., BEERS T.C., SANTUCCI R.M., et al.
2018AJ....156..179R viz 17       D               6 90 2 Kinematics of highly r-process-enhanced field stars: evidence for an accretion origin and detection of several groups from disrupted satellites. ROEDERER I.U., HATTORI K. and VALLURI M.
2018ApJ...854..131W 392           X C       8 9 ~ The odd isotope fractions of barium in the strongly r-process-enhanced (r-II) stars. WENYUAN C., XIAOHUA J., JIANRONG S., et al.
2018ApJ...854L..20S 219           X C       4 6 11 The r-process pattern of a bright, highly r-process-enhanced metal-poor halo star at [Fe/H] ∼ -2. SAKARI C.M., PLACCO V.M., HANSEN T., et al.
2018ApJ...856...58H 44           X         1 11 ~ Study of the abundance features of the metal-poor star HD 94028. HAN W., ZHANG L., YANG G., et al.
2018ApJ...856..138J 88           X         2 13 14 From actinides to zinc: using the full abundance pattern of the brightest star in Reticulum II to distinguish between different r-process sites. JI A.P. and FREBEL A.
2018ApJ...857...46I viz 17       D               1 205 9 The initial mass function of the first stars inferred from extremely metal-poor stars. ISHIGAKI M.N., TOMINAGA N., KOBAYASHI C., et al.
2018ApJ...858...92H viz 279       D     X         7 115 12 The r-process alliance: first release from the southern search for r-process-enhanced stars in the galactic halo. HANSEN T.T., HOLMBECK E.M., BEERS T.C., et al.
2018ApJ...859L..24H 219           X C       4 7 9 The R-Process Alliance: 2MASS J09544277+5246414 the most actinide-enhanced R-II star known. HOLMBECK E.M., BEERS T.C., ROEDERER I.U., et al.
2018ApJ...864...43C viz 44           X         1 12 2 The r-process alliance: chemical abundances for a trio of r-process-enhanced stars –one strong, one moderate, and one mild. CAIN M., FREBEL A., GULL M., et al.
2018ApJ...865...87O 87           X         2 6 ~ Stochastic chemical evolution of Galactic subhalos and the origin of r-process elements. OJIMA T., ISHIMARU Y., WANAJO S., et al.
2018ApJ...865..129R viz 87             C       1 25 2 The r-process Alliance: a comprehensive abundance analysis of HD 222925, a metal-poor star with an extreme r-process enhancement of [Eu/H] = -0.14. ROEDERER I.U., SAKARI C.M., PLACCO V.M., et al.
2018ApJ...868...65W 44           X         1 6 ~ Physical conditions for the r-process. I. Radioactive energy sources of kilonovae. WANAJO S.
2018ApJ...868..110S viz 322       D     X         8 152 ~ The r-process Alliance: first release from the northern search for r-process-enhanced metal-poor stars in the galactic halo. SAKARI C.M., PLACCO V.M., FARRELL E.M., et al.
2018MNRAS.473.3377A 148       D     X C       3 13 9 Galactic evolution of copper in the light of NLTE computations. ANDRIEVSKY S., BONIFACIO P., CAFFAU E., et al.
2018MNRAS.480.4754G 44           X         1 1 ~ Calculated oscillator strengths for the strongest lines of cosmochronological interest in the visible spectrum of singly ionized uranium (U II). GAMRATH S., PALMERI P. and QUINET P.
2017A&A...607A..91H viz 726         O X C       16 8 17 The Hamburg/ESO R-process Enhanced Star survey (HERES). XI. The highly r-process-enhanced star CS 29497-004. HILL V., CHRISTLIEB N., BEERS T.C., et al.
2017A&A...608A..89M viz 43           X         1 75 2 The formation of the Milky Way halo and its dwarf satellites: a NLTE-1D abundance analysis. II. Early chemical enrichment. MASHONKINA L., JABLONKA P., SITNOVA T., et al.
2017ApJ...835...23R 43           X         1 17 10 The origin of the heaviest metals in most ultra-faint dwarf galaxies. ROEDERER I.U.
2017ApJ...838...44H viz 128           X         3 49 24 An r-process enhanced star in the dwarf galaxy Tucana III. HANSEN T.T., SIMON J.D., MARSHALL J.L., et al.
2017ApJ...844...18P viz 172           X C       3 8 17 RAVE J203843.2-002333: the first highly r-process-enhanced star identified in the RAVE survey. PLACCO V.M., HOLMBECK E.M., FREBEL A., et al.
2017ApJ...850..179C viz 43           X         1 28 5 The universality of the rapid neutron-capture process revealed by a possible disrupted dwarf galaxy star. CASEY A.R. and SCHLAUFMAN K.C.
2016A&A...586A.160H 42         O X         1 36 27 The role of binaries in the enrichment of the early Galactic halo. II. Carbon-enhanced metal-poor stars: CEMP-no stars. HANSEN T.T., ANDERSEN J., NORDSTROEM B., et al.
2016A&A...587A..50A 43           X         1 6 11 How plausible are the proposed formation scenarios of CEMP-r/s stars? ABATE C., STANCLIFFE R.J. and LIU Z.-W.
2016A&A...591A.118S viz 17       D               4 31388 40 The PASTEL catalogue: 2016 version. SOUBIRAN C., LE CAMPION J.-F., BROUILLET N., et al.
2016A&A...593A..62M 2240 T   A S   X C       51 13 2 The odd-isotope fractions of barium in CEMP-r/s star HE 0338-3945 and r-II star
CS 31082-001.
MENG X.Y., CUI W.Y., SHI J.R., et al.
2016A&A...593A..79S 42           X         1 23 10 Looking for imprints of the first stellar generations in metal-poor bulge field stars. SIQUEIRA-MELLO C., CHIAPPINI C., BARBUY B., et al.
2016ApJ...821...37R viz 2 9 18 The diverse origins of neutron-capture elements in the metal-poor star HD 94028: possible detection of products of i-process nucleosynthesis. ROEDERER I.U., KARAKAS A.I., PIGNATARI M., et al.
2016ApJ...823...36T 23 1 A Non-LTE study of silicon abundances in giant stars from the Si I infrared lines in the zJ-band. TAN K., SHI J., TAKADA-HIDAI M., et al.
2016MNRAS.459.4174G 173           X C       3 2 12 Solar r-process-constrained actinide production in neutrino-driven winds of supernovae. GORIELY S. and JANKA H.-T.
2015A&A...576A.128D 389       D     X C       9 5 13 Three-dimensional hydrodynamical CO5BOLD model atmospheres of red giant stars. IV. Oxygen diagnostics in extremely metal-poor red giants with infrared OH lines. DOBROVOLSKAS V., KUCINSKAS A., BONIFACIO P., et al.
2015A&A...579A...8W 41           X         1 98 3 Palladium and silver abundances in stars with [Fe/H] > -2.6. WU X., WANG L., SHI J., et al.
2015A&A...583A..49H 510       D   O X C       12 31 22 The role of binaries in the enrichment of the early Galactic halo. I. r-process-enhanced metal-poor stars. HANSEN T.T., ANDERSEN J., NORDSTROEM B., et al.
2015A&A...584A..86S viz 248           X C       5 6 9 High-resolution abundance analysis of HD 140283. SIQUEIRA-MELLO C., ANDRIEVSKY S.M., BARBUY B., et al.
2015ApJ...813...56N 165           X         4 12 3 Study of the element abundances in HD 140283: the abundance robustness of the weak r- and main r-process stars. NIU P., CUI W. and ZHANG B.
2015MNRAS.449.3889R viz 82           X         2 26 12 Detailed abundances of 15 stars in the metal-poor globular cluster NGC 4833. ROEDERER I.U. and THOMPSON I.B.
2015RAA....15.1264L 192     A     X         5 3 10 Discovery of a strongly r-process enhanced extremely metal-poor star LAMOST J110901.22+075441.8. LI H.-N., AOKI W., HONDA S., et al.
2014A&A...565A..93S 952       D     X C       23 13 30 High-resolution abundance analysis of very metal-poor r-I stars. SIQUEIRA MELLO C., HILL V., BARBUY B., et al.
2014A&A...565A.123M 301       D     X C       7 19 8 The Hamburg/ESO R-process Enhanced Star survey (HERES). IX. Constraining pure r-process Ba/Eu abundance ratio from observations of r-II stars. MASHONKINA L. and CHRISTLIEB N.
2014A&A...568A..47H 57       D   O X         2 72 16 Stellar abundances and presolar grains trace the nucleosynthetic origin of molybdenum and ruthenium. HANSEN C.J., ANDERSEN A.C. and CHRISTLIEB N.
2014A&A...569A..43M viz 391     A     X C       9 14 18 The Hamburg/ESO R-process Enhanced Star survey (HERES). X. HE 2252-4225, one more r-process enhanced and actinide-boost halo star. MASHONKINA L., CHRISTLIEB N. and ERIKSSON K.
2014A&A...571A..40S viz 284           X C       6 12 8 The low Sr/Ba ratio on some extremely metal-poor stars. SPITE M., SPITE F., BONIFACIO P., et al.
2014AJ....147..136R viz 97       D     X         3 317 131 A search for stars of very low metal abundance. VI. Detailed abundances of 313 metal-poor stars. ROEDERER I.U., PRESTON G.W., THOMPSON I.B., et al.
2014AJ....148...81M viz 16       D               1 329460 61 APASS Landolt-Sloan BVgri photometry of RAVE stars. I. Data, effective temperatures, and reddenings. MUNARI U., HENDEN A., FRIGO A., et al.
2014ApJ...786...74F viz 44           X         1 26 88 Segue 1: an unevolved fossil galaxy from the early universe. FREBEL A., SIMON J.D. and KIRBY E.N.
2014ApJ...787..162H 44           X         1 14 47 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 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...792...32S 68           X         1 4 109 The mass spectrum of the first stars. SUSA H., HASEGAWA K. and TOMINAGA N.
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.
2014MNRAS.443.2426N 869       D     X C F     20 24 1 Is germanium (Ge, Z = 32) a neutron-capture element? NIU P., LIU W., CUI W., et al.
2014MNRAS.445.2970R 544       D     X C F     12 19 8 Nine new metal-poor stars on the subgiant and red horizontal branches with high levels of r-process enhancement. ROEDERER I.U., COWAN J.J., PRESTON G.W., et al.
2014PASP..126..544L 203           X C       4 4 2 Estimating R-process yields from abundances of the metal-poor stars. LI H., MA W., CUI W., et al.
2013A&A...550A.122S 2279 T K A     X C       55 5 39 First stars. XVI. HST/STIS abundances of heavy elements in the uranium-rich metal-poor star
CS 31082-001.
2013A&A...551A..57H 16       D   O           2 73 40 LTE or non-LTE, that is the question. The NLTE chemical evolution of strontium in extremely metal-poor stars. HANSEN C.J., BERGEMANN M., CESCUTTI G., et al.
2013A&A...558A..36C 40           X         1 21 13 The Hamburg/ESO R-process Enhanced Star survey (HERES). VIII. The r+s star He 1405-0822. CUI W.Y., SIVARANI T. and CHRISTLIEB N.
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...769...57F viz 99       D       C       5 17 53 Deriving stellar effective temperatures of metal-poor stars with the excitation potential method. FREBEL A., CASEY A.R., JACOBSON H.R., et al.
2013ApJ...770L..22W 261           X C       5 4 80 The r-process in proto-neutron-star wind revisited. WANAJO S.
2013ApJ...773...78B 196           X         2 2 232 Systematics of dynamical mass ejection, nucleosynthesis, and radioactively powered electromagnetic signals from neutron-star mergers. BAUSWEIN A., GORIELY S. and JANKA H.-T.
2013ApJ...775...12L 40           X         1 146 12 Investigation of the puzzling abundance pattern in the stars of the Fornax dwarf spheroidal galaxy. LI H., CUI W. and ZHANG B.
2013MNRAS.434.1681C viz 16       D               2 91 34 The near-infrared CaII triplet as a metallicity indicator - II. Extension to extremely metal-poor metallicity regimes. CARRERA R., PANCINO E., GALLART C., et al.
2013MNRAS.434.2892B 16       D               1 292 8 A search for boron in damped Lyα systems. BERG T.A.M., ELLISON S.L., VENN K.A., et al.
2013PASJ...65...65T 16       D               1 46 9 Carbon abundances of metal-poor stars determined from the C I 1.068-1.069µm lines. TAKEDA Y. and TAKADA-HIDAI M.
2013PASP..125..143L 337       D     X         9 31 11 Study of neutron-capture element abundances in metal-poor stars. LI H., SHEN X., LIANG S., et al.
2012A&A...537A.118R 532       D     X C       13 112 9 The Hamburg/ESO R-process Enhanced Star survey (HERES). VII. Thorium abundances in metal-poor stars. REN J., CHRISTLIEB N. and ZHAO G.
2012A&A...540A..98M 318     A D   O X         9 53 31 Non-LTE effects on the lead and thorium abundance determinations for cool stars. MASHONKINA L., RYABTSEV A. and FREBEL A.
2012A&A...541A.143S viz 16       D               1 55 38 NLTE determination of the calcium abundance and 3D corrections in extremely metal-poor stars. SPITE M., ANDRIEVSKY S.M., SPITE F., et al.
2012A&A...545A..31H 532       D     X C       13 74 61 Silver and palladium help unveil the nature of a second r-process. HANSEN C.J., PRIMAS F., HARTMAN H., et al.
2012A&A...548A..34A viz 40           X         1 134 38 Elemental abundances and classification of carbon-enhanced metal-poor stars. ALLEN D.M., RYAN S.G., ROSSI S., et al.
2012ApJ...746..180W 90             C       1 3 69 The r-process in the neutrino-driven wind from a black-hole torus. WANAJO S. and JANKA H.-T.
2012ApJ...752..117M 42           X         1 5 22 The rare earth peak: an overlooked r-process diagnostic. MUMPOWER M.R., McLAUGHLIN G.C. and SURMAN R.
2012ApJ...756...36R 41           X         1 11 26 Germanium, arsenic, and selenium abundances in metal-poor stars. ROEDERER I.U.
2012PASJ...64...42T 175       D     X C       4 16 8 Behavior of [S/Fe] in very metal-poor stars from the S I 1.046µm lines revisited. TAKEDA Y. and TAKADA-HIDAI M.
2012PASP..124..304L 119           X         3 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.
2011A&A...525L...5H 212       D     X C       5 57 14 The origin of palladium and silver. HANSEN C.J. and PRIMAS F.
2011A&A...528A...9S 16       D               2 55 39 First stars. XIV. Sulfur abundances in extremely metal-poor stars. SPITE M., CAFFAU E., ANDRIEVSKY S.M., et al.
2011A&A...528A..92Z viz 16       D               1 254 10 The Hamburg/ESO R-process Enhanced Star survey (HERES). VI. The Galactic chemical evolution of silicon. ZHANG L., KARLSSON T., CHRISTLIEB N., et al.
2011A&A...530A.105A 134       D     X C       3 60 49 NLTE strontium abundance in a sample of extremely metal poor stars and the Sr/Ba ratio in the early Galaxy. ANDRIEVSKY S.M., SPITE F., KOROTIN S.A., et al.
2011A&A...534A..60B 2006 T K A D     X C       50 11 20 First stars. XV. Third-peak r-process element and actinide abundances in the uranium-rich star
CS 31082-001.
BARBUY B., SPITE M., HILL V., et al.
2011ApJ...730...77H 16       D               1 26 9 Spectroscopic studies of extremely metal-poor stars with the Subaru high dispersion spectrograph. V. The zn-enhanced metal-poor star BS 16920-017. HONDA S., AOKI W., BEERS T.C., et al.
2011ApJ...743L...1H 94       D     X         3 19 26 The binary frequency of r-process-element-enhanced metal-poor stars and its implications: chemical tagging in the primitive halo of the Milky way. HANSEN T., ANDERSEN J., NORDSTROM B., et al.
2011AstL...37..480S 13 4 The r- and s-process contributions to heavy-element abundances in the halo star HD 29907. SITNOVA T.M. and MASHONKINA L.I.
2011MNRAS.417.1534C 16       D               1 65 112 The most metal-poor damped Lyα systems: insights into chemical evolution in the very metal-poor regime. COOKE R., PETTINI M., STEIDEL C.C., et al.
2011MNRAS.418..284B viz 118           X C       2 115 128 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.
2011PABei..29..387Z 12 0 Progress of the study about R-process nucleosynthesis in metal-poor stars. ZHANG J., CUI W.-Y. and ZHANG B.
2011RvMP...83..157K 44           X         1 26 294 The s process: nuclear physics, stellar models, and observations. KAEPPELER F.
2010A&A...509A..84L 445       D     X C       11 24 10 Accuracy of spectroscopy-based radioactive dating of stars. LUDWIG H.-G., CAFFAU E., STEFFEN M., et al.
2010A&A...509A..88A 16       D               1 54 78 Non-LTE abundances of Mg and K in extremely metal-poor stars and the evolution of [O/Mg], [Na/Mg], [Al/Mg], and [K/Mg] in the Milky way. ANDRIEVSKY S.M., SPITE M., KOROTIN S.A., 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...511A..16N 641       D     X C       16 5 17 Transition probabilities of astrophysical interest in the niobium ions Nb+ and Nb2+. NILSSON H., HARTMAN H., ENGSTROEM L., et al.
2010A&A...515A.111S viz 16       D               2 17230 198 The PASTEL catalogue of stellar parameters. SOUBIRAN C., LE CAMPION J.-F., CAYREL DE STROBEL G., et al.
2010A&A...516A..46M viz 454     A     X C       11 9 42 The Hamburg/ESO R-process enhanced star survey (HERES). V. Detailed abundance analysis of the r-process enhanced star HE 2327-5642. MASHONKINA L., CHRISTLIEB N., BARKLEM P.S., et al.
2010A&ARv..18..595B 48           X         1 1 19 Evidence for the fifth element. Astrophysical status of dark energy. BLANCHARD A.
2010AJ....140.1694F viz 39           X         1 58 32 The chemical compositions of non-variable red and blue field horizontal branch stars. FOR B.-Q. and SNEDEN C.
2010AN....331..474F viz 3 14 97 Stellar archaeology: Exploring the Universe with metal-poor stars. FREBEL A.
2010ApJ...711..573R viz 40           X         1 30 73 Characterizing the chemistry of the Milky Way stellar halo: detailed chemical analysis of a metal-poor stellar stream. ROEDERER I.U., SNEDEN C., THOMPSON I.B., et al.
2010ApJ...723L.201A 40           X         1 9 35 Extreme enhancements of r-process elements in the cool metal-poor main-sequence star SDSS J2357-0052. AOKI W., BEERS T.C., HONDA S., et al.
2010ApJ...724..975R viz 484       D     X C       12 197 107 The ubiquity of the rapid neutron-capture process. ROEDERER I.U., COWAN J.J., KARAKAS A.I., et al.
2010ApJS..187..149A viz 16       D               1 535 58 StarCAT: a catalog of space telescope imaging spectrograph ultraviolet echelle spectra of stars. AYRES T.R.
2010MNRAS.404..253G viz 78           X         2 19 21 HD209621: abundances of neutron-capture elements. GOSWAMI A. and AOKI W.
2010MNRAS.409.1068Z 640       D     X C F     15 14 8 A holistic abundance analysis of r-rich stars. ZHANG J., CUI W. and ZHANG B.
2009A&A...494.1083A 54       D     X         2 41 57 Evolution of the barium abundance in the early galaxy from a NLTE analysis of the Ba lines in a homogeneous sample of EMP stars. ANDRIEVSKY S.M., SPITE M., KOROTIN S.A., et al.
2009A&A...501..519B viz 15       D               1 58 107 First stars. XII. Abundances in extremely metal-poor turnoff stars, and comparison with the giants. BONIFACIO P., SPITE M., CAYREL R., et al.
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