TYC 3129-1587-1 , the SIMBAD biblio

TYC 3129-1587-1 , the SIMBAD biblio (30 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST07:15:49


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Title First 3 Authors
2012A&A...537A.134A 15       D               2 42 47 Oscillation mode linewidths of main-sequence and subgiant stars observed by Kepler. APPOURCHAUX T., BENOMAR O., GRUBERBAUER M., et al.
2012A&A...543A..54A viz 194           X C       4 63 131 Oscillation mode frequencies of 61 main-sequence and subgiant stars observed by Kepler. APPOURCHAUX T., CHAPLIN W.J., GARCIA R.A., et al.
2014ApJ...787..110C viz 16       D               1 996 100 Stromgren survey for Asteroseismology and Galactic Archaeology: let the SAGA begin. CASAGRANDE L., SILVA AGUIRRE V., STELLO D., et al.
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.
2016MNRAS.460.3179W viz 16       D               1 77460 19 Distance and extinction determination for APOGEE stars with Bayesian method. WANG J., SHI J., PAN K., 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.
2016MNRAS.462.1577Y viz 16       D               1 89 4 Fundamental properties of Kepler and CoRoT targets - III. Tuning scaling relations using the first adiabatic exponent. YILDIZ M., CELIK ORHAN Z. and KAYHAN C.
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.
2017ApJ...838...25G viz 16       D               1 778 11 The metallicity distribution and hot Jupiter rate of the Kepler field: Hectochelle high-resolution spectroscopy for 776 Kepler target stars. GUO X., JOHNSON J.A., MANN A.W., 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.
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.
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.
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.
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 222       D     X   F     5 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.
2019MNRAS.483.4678V 17       D               1 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 100       D     X         3 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.
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.489.1753Y viz 100       D S             2 94 ~ Fundamental properties of Kepler and CoRoT targets - IV. Masses and radii from frequencies of minimum Δν and their implications. YILDIZ M., CELIK ORHAN Z. and KAYHAN C.
2020ApJ...888...34S viz 17       D               1 310 ~ ROBO-AO Kepler asteroseismic survey. II. Do stellar companions inhibit stellar oscillations? SCHONHUT-STASIK J., HUBER D., BARANEC C., et al.
2020A&A...636A..85S viz 17       D               1 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.
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.
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.514.1741R 18       D               1 14 4 Scaling relations of convective granulation noise across the HR diagram from 3D stellar atmosphere models. RODRIGUEZ DIAZ L.F., BIGOT L., AGUIRRE BORSEN-KOCH V., et al.
2022ApJ...941..175L 242       D S   X C       4 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.
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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