TYC 3130-1355-1 , the SIMBAD biblio

TYC 3130-1355-1 , the SIMBAD biblio (17 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST16:41:15


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Title First 3 Authors
2011A&A...529A..89D viz 15       D               1 3298 98 Global stellar variability study in the field-of-view of the Kepler satellite. DEBOSSCHER J., BLOMME J., AERTS C., et al.
2013A&A...556A..52T viz 16       D               1 265 46 Detection of a large sample of γ Doradus stars from Kepler space photometry and high-resolution ground-based spectroscopy. TKACHENKO A., AERTS C., YAKUSHECHKIN A., et al.
2013A&A...560A...4R viz 16       D               1 24132 291 Rotation and differential rotation of active Kepler stars. REINHOLD T., REINERS A. and BASRI G.
2015ApJS..218...27V 95       D       C       5 73 114 Gravity-mode period spacings as a seismic diagnostic for a sample of γ Doradus stars from Kepler space photometry and high-resolution ground-based spectroscopy. VAN REETH T., TKACHENKO A., AERTS C., et al.
2016ApJ...829...23D viz 16       D               1 4044 212 The Kepler catalog of stellar flares. DAVENPORT J.R.A.
2016A&A...593A.120V 4 40 161 Interior rotation of a sample of γ Doradus stars from ensemble modelling of their gravity-mode period spacings. VAN REETH T., TKACHENKO A. and AERTS C.
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.
2018MNRAS.479..183B viz 16       D               1 2598 17 Gaia luminosities of pulsating A-F stars in the Kepler field. BALONA L.A.
2019RAA....19....1Q 17       D               3 172 1 Physical properties of γ Doradus pulsating stars and their relationship with long-period δ Scuti variables. QIAN S.-B., LI L.-J., HE J.-J., et al.
2019MNRAS.485.2380M viz 17       D               1 14330 108 Gaia-derived luminosities of Kepler A/F stars and the pulsator fraction across the δ Scuti instability strip. MURPHY S.J., HEY D., VAN REETH T., et al.
2019MNRAS.485.3248M 18       D               1 38 55 Asteroseismic masses, ages, and core properties of γ Doradus stars using gravito-inertial dipole modes and spectroscopy. MOMBARG J.S.G., VAN REETH T., PEDERSEN M.G., et al.
2019A&A...626A.121O viz 18       D               1 40 62 γ Doradus stars as a test of angular momentum transport models. OUAZZANI R.-M., MARQUES J.P., GOUPIL M.-J., et al.
2020MNRAS.491.3586L viz 17       D               1 609 75 Gravity-mode period spacings and near-core rotation rates of 611 γ Doradus stars with Kepler. LI G., VAN REETH T., BEDDING T.R., et al.
2021A&A...650A..58M 104       D       C       4 37 25 Constraining stellar evolution theory with asteroseismology of γ Doradus stars using deep learning. Stellar masses, ages, and core-boundary mixing. MOMBARG J.S.G., VAN REETH T. and AERTS C.
2021A&A...650A.151G 17       D               4 131 14 A homogeneous spectroscopic analysis of a Kepler legacy sample of dwarfs for gravity-mode asteroseismology. GEBRUERS S., STRAUMIT I., TKACHENKO A., et al.
2021A&A...655A..29J 17       D               1 94 23 One size does not fit all: Evidence for a range of mixing efficiencies in stellar evolution calculations. JOHNSTON C.
2022A&A...668A.137G 134           X C       2 64 3 Internal rotation and buoyancy travel time of 60 γ Doradus stars from uninterrupted TESS light curves spanning 352 days. GARCIA S., VAN REETH T., DE RIDDER J., et al.

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