CD-26 13904 , the SIMBAD biblio

CD-26 13904 , the SIMBAD biblio (39 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.23CEST23:12:12


Sort references on where and how often the object is cited
trying to find the most relevant references on this object.
More on score
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
2006A&A...460..695T viz 15       D   O           1889 534 Search for associations containing young stars (SACY). I. Sample and searching method. TORRES C.A.O., QUAST G.R., DA SILVA L., et al.
2009ApJS..184..138H viz 15       D               1 20666 68 XID II: statistical cross-association of ROSAT bright source catalog X-ray sources with 2MASS point source catalog near-infrared sources. HAAKONSEN C.B. and RUTLEDGE R.E.
2009A&A...508..833D viz 15       D               1 372 134 Search for associations containing young stars (SACY). III. Ages and Li abundances. DA SILVA L., TORRES C.A.O., DE LA REZA R., et al.
2010A&A...520A..15M viz 435       D     X         12 239 111 RACE-OC project: rotation and variability of young stellar associations within 100 pc. MESSINA S., DESIDERA S., TURATTO M., et al.
2011A&A...532A..10M viz 15       D               1 216 40 RACE-OC project: rotation and variability in the ε Chamaeleontis, Octans, and Argus stellar associations. MESSINA S., DESIDERA S., LANZAFAME A.C., et al.
2012AJ....143..134M viz 15       D               2 200 26 The sizes of the nearest young stars. McCARTHY K. and WHITE R.J.
2013ApJS..208....9P viz 19       D               3 243 1569 Intrinsic colors, temperatures, and bolometric corrections of pre-main-sequence stars. PECAUT M.J. and MAMAJEK E.E.
2014MNRAS.441.2361V viz 18       D               1 75 303 Stellar magnetism: empirical trends with age and rotation. VIDOTTO A.A., GREGORY S.G., JARDINE M., et al.
2014A&A...568A..26E viz 16       D               1 270 46 Search for associations containing young stars (SACY). V. Is multiplicity universal? Tight multiple systems. ELLIOTT P., BAYO A., MELO C.H.F., et al.
2015A&A...580A..88E viz 16       D               3 219 21 Search for associations containing young stars (SACY). VI. Is multiplicity universal? Stellar multiplicity in the range 3-1000 au from adaptive-optics observations. ELLIOTT P., HUELAMO N., BOUY H., et al.
2015MNRAS.454..593B viz 16       D               1 551 376 A self-consistent, absolute isochronal age scale for young moving groups in the solar neighbourhood. BELL C.P.M., MAMAJEK E.E. and NAYLOR T.
2015A&A...583A..85A viz 16       D               2 214 22 Reaching the boundary between stellar kinematic groups and very wide binaries. III. Sixteen new stars and eight new wide systems in the β Pictoris moving group. ALONSO-FLORIANO F.J., CABALLERO J.A., CORTES-CONTRERAS M., et al.
2015MNRAS.453.4301S 16       D               1 56 43 The energy budget of stellar magnetic fields. SEE V., JARDINE M., VIDOTTO A.A., et al.
2016MNRAS.457..580F 782       D     X   F     19 42 134 The evolution of surface magnetic fields in young solar-type stars - I. The first 250 Myr. FOLSOM C.P., PETIT P., BOUVIER J., et al.
2016ApJS..224....2H viz 16       D               1 31767 226 The K2 ecliptic plane input catalog (EPIC) and stellar classifications of 138,600 targets in campaigns 1-8. HUBER D., BRYSON S.T., HAAS M.R., et al.
2016A&A...590A..13E viz 16       D               2 646 29 Search for associations containing young stars (SACY). VII. New stellar and substellar candidate members in the young associations. ELLIOTT P., BAYO A., MELO C.H.F., et al.
2016A&A...591A..43D viz 16       D               2 130 8 Lower limit for differential rotation in members of young loose stellar associations. DISTEFANO E., LANZAFAME A.C., LANZA A.F., et al.
2016MNRAS.459.4499E 16       D               3 61 9 The crucial role of higher order multiplicity in wide binary formation: a case study using the β-Pictoris moving group. ELLIOTT P. and BAYO A.
2016A&A...596A..29M 56       D     X         2 69 17 The rotation-lithium depletion correlation in the β Pictoris association and the LDB age determination. MESSINA S., LANZAFAME A.C., FEIDEN G.A., et al.
2017A&A...600A..83M viz 138       D   O X         4 150 9 The β Pictoris association: Catalog of photometric rotational periods of low-mass members and candidate members. MESSINA S., MILLWARD M., BUCCINO A., et al.
2017MNRAS.466.1542S 16       D               1 66 30 Studying stellar spin-down with Zeeman-Doppler magnetograms. SEE V., JARDINE M., VIDOTTO A.A., et al.
2017AJ....154...69S viz 16       D               3 237 80 All-sky Co-moving Recovery Of Nearby Young Members (ACRONYM). II. The β Pictoris Moving Group. SHKOLNIK E.L., ALLERS K.N., KRAUS A.L., et al.
2017A&A...607A...3M 97       D   O   C       3 125 3 The β Pictoris association low-mass members: Membership assessment, rotation period distribution, and dependence on multiplicity. MESSINA S., LANZAFAME A.C., MALO L., et al.
2019ApJ...872...17R viz 17       D               1 449 23 HAZMAT. V. The ultraviolet and X-ray evolution of K stars. RICHEY-YOWELL T., SHKOLNIK E.L., SCHNEIDER A.C., et al.
2019ApJ...876..118S 17       D               1 85 52 Estimating magnetic filling factors from Zeeman-Doppler magnetograms. SEE V., MATT S.P., FOLSOM C.P., et al.
2019ApJ...886..120S 17       D               1 87 39 Do non-dipolar magnetic fields contribute to spin-down torques? SEE V., MATT S.P., FINLEY A.J., et al.
2019MNRAS.489.2189L viz 17       D               1 616 ~ Evaluation of nearby young moving groups based on unsupervised machine learning. LEE J. and SONG I.
2019MNRAS.490.3158C viz 17       D               1 465834 28 A catalogue of stellar diameters and fluxes for mid-infrared interferometry. CRUZALEBES P., PETROV R.G., ROBBE-DUBOIS S., et al.
2020MNRAS.493.1003L 85             C       1 51 ~ Measuring stellar magnetic helicity density. LUND K., JARDINE M., LEHMANN L.T., et al.
2020MNRAS.494.2429B viz 17       D               1 240 ~ A kinematically hot population of young stars in the solar neighbourhood. BINKS A.S., JEFFRIES R.D. and WRIGHT N.J.
2020ApJ...898...27S viz 17       D               1 2727 23 BAFFLES: Bayesian ages for field lower-mass stars. STANFORD-MOORE S.A., NIELSEN E.L., DE ROSA R.J., et al.
2021A&A...645A..30Z viz 17       D               1 431 20 Search for associations containing young stars (SACY). VIII. An updated census of spectroscopic binary systems exhibiting hints of non-universal multiplicity among their associations. ZUNIGA-FERNANDEZ S., BAYO A., ELLIOTT P., et al.
2021MNRAS.502.4903L 17       D               1 51 ~ Field linkage and magnetic helicity density. LUND K., JARDINE M., RUSSELL A.J.B., et al.
2021MNRAS.506..150B viz 17       D               1 588596 276 The GALAH+ survey: Third data release. BUDER S., SHARMA S., KOS J., et al.
2022MNRAS.514.4300B viz 18       D               1 954 7 Linking chromospheric activity and magnetic field properties for late-type dwarf stars. BROWN E.L., JEFFERS S.V., MARSDEN S.C., et al.
2022AJ....164..174H 18       D               2 63 1 The Solar Neighborhood L: Spectroscopic Discovery of K Dwarfs Younger Than 1 Gyr and New Binaries within 30 pc. HUBBARD-JAMES H.-S., LESLEY D.X., HENRY T.J., et al.
2023MNRAS.524.1757H 93             C       1 26 ~ Evolution of brightness and magnetic features of young solar-type stars - II. The young F8 star HIP 71933. HUGHES J.E., MARSDEN S.C., CARTER B.D., et al.
2023MNRAS.524.2042E 765       D     X   F     16 37 ~ The winds of young Solar-type stars in the Pleiades, AB Doradus, Columba, and β Pictoris. EVENSBERGET D., MARSDEN S.C., CARTER B.D., et al.
2023MNRAS.524.5060C 299       D     X   F     6 32 ~ Numerical quantification of the wind properties of cool main sequence stars. CHEBLY J.J., ALVARADO-GOMEZ J.D., POPPENHAGER K., et al.

goto View the references in ADS