LP 584-32 , the SIMBAD biblio

LP 584-32 , the SIMBAD biblio (31 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.20CEST04:31:02


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Title First 3 Authors
2003ApJ...582.1011S viz 35377 223 Improved astrometry and photometry for the Luyten catalog. II. Faint stars and the revised catalog. SALIM S. and GOULD A.
2007AJ....134..778M viz 15       D               566 6 Mapping the local galactic halo. I. Optical photometry of cool subdwarf candidates. MARSHALL J.L.
2010ApJ...723L.201A 726 T   A D     X C       18 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.
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.
2011A&A...534A..60B 77           X         2 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.
2011MNRAS.418..284B viz 38           X         1 115 191 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.
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.
2013AJ....145...13A viz 16       D               1 151 146 High-resolution spectroscopy of extremely metal-poor stars from SDSS/SEGUE. I. Atmospheric parameters and chemical compositions. AOKI W., BEERS T.C., LEE Y.S., et al.
2013AJ....146..132L 17       D               1 39 128 Carbon-enhanced metal-poor stars in SDSS/SEGUE. I. Carbon abundance estimation and frequency of CEMP stars. LEE Y.S., BEERS T.C., MASSERON T., et al.
2014ApJ...788..180C viz 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.
2014A&A...565A.123M 134       D     X         4 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...569A..43M viz 39           X         1 14 26 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.
2014ApJ...794...60T viz 16       D               1 17948 6 Red giant stars from the Sloan Digital Sky Survey. II. Distances. TAN K., CHEN Y., CARRELL K., et al.
2014MNRAS.445.2970R 39           X         1 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.
2014ApJ...797...21P viz 16       D               1 606 226 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.
2015ApJ...813...56N 79           X         2 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.
2015A&A...583A..49H 79         O X         2 31 28 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.
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.
2016A&A...593A..28F viz 16       D               1 108 4 Deep SDSS optical spectroscopy of distant halo stars. III. Chemical analysis of extremely metal-poor stars. FERNANDEZ-ALVAR E., ALLENDE PRIETO C., BEERS T.C., et al.
2017PASP..129f4201Y 41           X         1 4 ~ Formation of the abundance boundaries of the heavier neutron-capture elements in metal-poor stars. YANG G., LI H., LIU N., et al.
2017MNRAS.468..418F 97       D         F     2 51 15 The mass distribution of Population III stars. FRASER M., CASEY A.R., GILMORE G., et al.
2017A&A...607A..91H viz 43           X         1 8 20 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 41           X         1 75 50 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.
2018AJ....156..179R viz 16       D               6 90 63 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.
1995yCat.1098....0L viz 14       D               1 52092 ~ New Luyten Catalogue of stars with proper motions larger than two tenths of an arcsecond (NLTT). LUYTEN W.J.
2019ApJ...882...40J viz 17       D               2 210 41 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.
2020ApJ...891...39Y viz 148       D     X         4 30 92 Dynamical relics of the ancient galactic halo. YUAN Z., MYEONG G.C., BEERS T.C., et al.
2020A&A...636A.115D 17       D               2 94 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.
2021ApJ...907...10L viz 17       D               1 1549 37 Dynamically tagged groups of very metal-poor halo stars from the HK and Hamburg/ESO surveys. LIMBERG G., ROSSI S., BEERS T.C., et al.
2021RAA....21..111H 44           X         1 9 ~ Pollution tracks of r-process material in [Sr/Ba] vs. [Ba/Fe] space for the early Galaxy. HAN W.-Q., YANG G.-C., ZHANG L., et al.
2023ApJ...946...48H 205       D     X C       4 181 5 Finding r-II Sibling Stars in the Milky Way with the Greedy Optimistic Clustering Algorithm. HATTORI K., OKUNO A. and ROEDERER I.U.

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