TYC 3560-2509-1 , the SIMBAD biblio

TYC 3560-2509-1 , the SIMBAD biblio (53 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.24CEST12:39:44


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Title First 3 Authors
2013MNRAS.434.1422M viz 16       D               1 399 81 Atmospheric parameters of 169 F-, G-, K- and M-type stars in the Kepler field. MOLENDA-ZAKOWICZ J., SOUSA S.G., FRASCA A., et al.
2014ApJS..210....1C viz 16       D               1 519 296 Asteroseismic fundamental properties of solar-type stars observed by the NASA Kepler mission. CHAPLIN W.J., BASU S., HUBER D., et al.
2014ApJS..211...24M viz 16       D               1 34022 573 Rotation periods of 34,030 Kepler main-sequence stars: the full autocorrelation sample. McQUILLAN A., MAZEH T. and AIGRAIN S.
2014ApJ...790L..23D viz 16       D               1 79 34 Rotation periods and ages of solar analogs and solar twins revealed by the Kepler mission. DO NASCIMENTO J.-D.Jr, GARCIA R.A., MATHUR S., et al.
2014A&A...572A..34G viz 16       D               1 315 228 Rotation and magnetism of Kepler pulsating solar-like stars. Towards asteroseismically calibrated age-rotation relations. GARCIA R.A., CEILLIER T., SALABERT D., et al.
2014A&A...572A..95M 16       D   O           2 165 49 Correcting the spectroscopic surface gravity using transits and asteroseismology. No significant effect on temperatures or metallicities with ARES and MOOG in local thermodynamic equilibrium. MORTIER A., SOUSA S.G., ADIBEKYAN V.Z., et al.
2015ApJ...808..187B viz 16       D               1 540 73 The metallicities of stars with and without transiting planets. BUCHHAVE L.A. and LATHAM D.W.
2015ApJ...809....8B viz 16       D               1 112329 282 Terrestrial planet occurrence rates for the Kepler GK dwarf sample. BURKE C.J., CHRISTIANSEN J.L., MULLALLY F., et al.
2016AJ....152....6W viz 16       D               1 3060 13 Calibration of LAMOST stellar surface gravities using the Kepler asteroseismic data. WANG L., WANG W., WU Y., et al.
2016A&A...591A.118S viz 16       D               2 31406 141 The PASTEL catalogue: 2016 version. SOUBIRAN C., LE CAMPION J.-F., BROUILLET N., et al.
2016ApJS..225...32B viz 16       D               1 1473 266 Spectral properties of cool stars: extended abundance analysis of 1,617 planet-search stars. BREWER J.M., FISCHER D.A., VALENTI J.A., et al.
2016A&A...594A..39F viz 16       D               1 51408 86 Activity indicators and stellar parameters of the Kepler targets. An application of the ROTFIT pipeline to LAMOST-Kepler stellar spectra. FRASCA A., MOLENDA-ZAKOWICZ J., DE CAT P., et al.
2017ApJ...834..207M viz 16       D               1 4096 4 Magnetic activity analysis for a sample of G-type main sequence Kepler targets. MEHRABI A., HE H. and KHOSROSHAHI H.
2017ApJ...835..172L viz 18       D               4 73 170 Standing on the shoulders of dwarfs: the Kepler asteroseismic LEGACY sample. I. Oscillation mode parameters. LUND M.N., SILVA AGUIRRE V., DAVIES G.R., et al.
2017ApJ...835..173S viz 19       D               1 67 204 Standing on the shoulders of dwarfs: the Kepler asteroseismic LEGACY sample. II. Radii, masses, and ages. SILVA AGUIRRE V., LUND M.N., ANTIA H.M., et al.
2017ApJ...837...47V 16       D               1 67 17 Seismic measurement of the locations of the base of convection zone and helium ionization zone for stars in the Kepler seismic LEGACY sample. VERMA K., RAODEO K., ANTIA H.M., et al.
2017RAA....17....5W 16       D               2 180 4 Stellar parameters of main sequence turn-off star candidates observed with LAMOST and Kepler. WU Y.-Q., XIANG M.-S., ZHANG X.-F., et al.
2017A&A...601A..67C viz 16       D               4 59 55 Characterizing solar-type stars from full-length Kepler data sets using the Asteroseismic Modeling Portal. CREEVEY O.L., METCALFE T.S., SCHULTHEIS M., et al.
2017RAA....17...44L 755     A     X         19 6 ~ Seismic diagnostics of solar-like oscillating stars. LI Y.-G., DU M.-H., XIE B.-H., et al.
2017ApJ...844..102H viz 16       D               1 2236 180 Asteroseismology and Gaia: testing scaling relations using 2200 Kepler stars with TGAS parallaxes. HUBER D., ZINN J., BOJSEN-HANSEN M., et al.
2017A&A...604A..42R 41           X         1 13 3 Anomalies in the Kepler Asteroseismic Legacy Project Data A re-analysis of 16 Cyg A & B, KIC 8379927 and 6 solar-like stars. ROXBURGH I.W.
2017ApJ...847...97S 16       D               1 107 6 Robo-AO Kepler asteroseismic survey. I. Adaptive optics imaging of 99 asteroseismic Kepler dwarfs and subgiants. SCHONHUT-STASIK J.S., BARANEC C., HUBER D., et al.
2017ApJS..233...23S viz 16       D               1 422 94 The first APOKASC catalog of Kepler dwarf and subgiant stars. SERENELLI A., JOHNSON J., HUBER D., et al.
2018ApJ...857..119B viz 16       D               1 43 6 Asymmetry of line profiles of stellar oscillations measured by Kepler for ensembles of solar-like oscillators: impact on mode frequencies and dependence on effective temperature. BENOMAR O., GOUPIL M., BELKACEM K., et al.
2018ApJ...858...28V viz 16       D               1 459 13 Investigating the metallicity-mixing-length relation. VIANI L.S., BASU S., ONG J.M.J., et al.
2018A&A...612L...2K viz 16       D               1 220 7 Signature of non-isotropic distribution of stellar rotation inclination angles in the Praesepe cluster. KOVACS G.
2018MNRAS.477.5052N 16       D               1 35 10 Asteroseismic modelling of solar-type stars: internal systematics from input physics and surface correction methods. NSAMBA B., CAMPANTE T.L., MONTEIRO M.J.P.F.G., et al.
2018ApJ...861..149F viz 16       D               1 2261 6 The Kepler Follow-up Observation Program. II. Stellar parameters from medium- and high-resolution spectroscopy. FURLAN E., CIARDI D.R., COCHRAN W.D., et al.
2018ApJS..237...17S viz 16       D               2 89 12 Signatures of magnetic activity in the seismic data of solar-type stars observed by Kepler. SANTOS A.R.G., CAMPANTE T.L., CHAPLIN W.J., et al.
2018A&A...615A..49C viz 16       D               1 224764 54 Characterising open clusters in the solar neighbourhood with the Tycho-Gaia Astrometric Solution. CANTAT-GAUDIN T., VALLENARI A., SORDO R., et al.
2018MNRAS.479..391K 16       D               1 101 11 Reliability of stellar inclination estimated from asteroseismology: analytical criteria, mock simulations, and Kepler data analysis. KAMIAKA S., BENOMAR O. and SUTO Y.
2018MNRAS.479.4416C 99       D         F     4 68 4 Surface correction of main-sequence solar-like oscillators with the Kepler LEGACY sample. COMPTON D.L., BEDDING T.R., BALL W.H., et al.
2018Sci...361.1231B 1 40 78 Asteroseismic detection of latitudinal differential rotation in 13 Sun-like stars. BENOMAR O., BAZOT M., NIELSEN M.B., et al.
2018MNRAS.481.3244G viz 16       D               1 3079 24 Chemo-kinematics of the Milky Way from the SDSS-III MARVELS survey. GRIEVES N., GE J., THOMAS N., et al.
2019MNRAS.483.4678V 17       D               2 66 43 Helium abundance in a sample of cool stars: measurements from asteroseismology. VERMA K., RAODEO K., BASU S., et al.
2019A&A...622A.130B 17       D               2 97 34 Stellar ages, masses, and radii from asteroseismic modeling are robust to systematic errors in spectroscopy. BELLINGER E.P., HEKKER S., ANGELOU G.C., et al.
2019MNRAS.487..595H 100       D         F     3 12 ~ Damping rates and frequency corrections of Kepler LEGACY stars. HOUDEK G., LUND M.N., TRAMPEDACH R., et al.
2019ApJ...879...69T viz 17       D               1 222609 141 The Payne: self-consistent ab initio fitting of stellar spectra. TING Y.-S., CONROY C., RIX H.-W., et al.
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.
2020ApJS..247....9Z viz 17       D               1 5575 26 Magnetic activity of F-, G-, and K-type stars in the LAMOST-Kepler field. ZHANG J., BI S., LI Y., et al.
2020A&A...636A..70S 17       D               1 19 ~ Mitigating flicker noise in high-precision photometry. I. Characterization of the noise structure, impact on the inferred transit parameters, and predictions for CHEOPS observations. SULIS S., LENDL M., HOFMEISTER S., et al.
2020A&A...636A..85S viz 17       D               2 3696 ~ Derivation of parameters for 3748 FGK stars using H-band spectra from APOGEE Data Release 14. SARMENTO P., DELGADO MENA E., ROJAS-AYALA B., et al.
2020AJ....160...90A viz 17       D               1 13200 33 Exploring the evolution of stellar rotation using galactic kinematics. ANGUS R., BEANE A., PRICE-WHELAN A.M., et al.
2020AJ....160..120J viz 17       D               1 365761 238 APOGEE data and spectral analysis from SDSS Data Release 16: seven years of observations including first results from APOGEE-South. JONSSON H., HOLTZMAN J.A., ALLENDE PRIETO C., et al.
2020MNRAS.499.3481A viz 17       D               1 28505 24 Evidence for metallicity-dependent spin evolution in the Kepler field. AMARD L., ROQUETTE J. and MATT S.P.
2021MNRAS.500...54N viz 17       D               1 39 13 Asteroseismic modelling of solar-type stars: a deeper look at the treatment of initial helium abundance. NSAMBA B., MOEDAS N., CAMPANTE T.L., et al.
2021AJ....161...68L viz 17       D               1 253 24 Hot stars with Kepler planets have high obliquities. LOUDEN E.M., WINN J.N., PETIGURA E.A., et al.
2021AJ....161..189L viz 17       D               1 29956 19 Gyro-kinematic ages for around 30,000 Kepler stars. LU Y., ANGUS R., CURTIS J.L., et al.
2021NatAs...5..707H viz 17       D               1 95 38 Weakened magnetic braking supported by asteroseismic rotation rates of Kepler dwarfs. HALL O.J., DAVIES G.R., VAN SADERS 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.
2022ApJ...941..175L 18       D               1 99 2 Meta-analysis of Photometric and Asteroseismic Measurements of Stellar Rotation Periods: The Lomb-Scargle Periodogram, Autocorrelation Function, and Wavelet and Rotational Splitting Analysis for 92 Kepler Asteroseismic Targets. LU Y., BENOMAR O., KAMIAKA S., et al.
2023MNRAS.520..418T 19       D               1 31 1 Transition of latitudinal differential rotation as a possible cause of weakened magnetic braking of solar-type stars. TOKUNO T., SUZUKI T.K. and SHODA M.
2024ApJ...962..138S 20       D               1 56 ~ Stellar Cruise Control: Weakened Magnetic Braking Leads to Sustained Rapid Rotation of Old Stars. SAUNDERS N., VAN SADERS J.L., LYTTLE A.J., et al.

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