KOI-1225 , the SIMBAD biblio

KOI-1225 , the SIMBAD biblio (24 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST02:34:07


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Title First 3 Authors
2011AJ....141...50W viz 15       D               1 374 165 White-light flares on cool stars in the Kepler quarter 1 data. WALKOWICZ L.M., BASRI G., BATALHA N., et al.
2011AJ....141...78C viz 15       D               1 254 77 Low-mass eclipsing binaries in the initial Kepler Data Release. COUGHLIN J.L., LOPEZ-MORALES M., HARRISON T.E., et al.
2011AJ....141...83P viz 15       D               1 1891 430 Kepler eclipsing binary stars. I. Catalog and principal characterization of 1879 eclipsing binaries in the first data release. PRSA A., BATALHA N., SLAWSON R.W., et al.
2011ApJ...736...19B viz 15       D               1 1507 867 Characteristics of planetary candidates observed by Kepler. II. Analysis of the first four months of data. BORUCKI W.J., KOCH D.G., BASRI G., et al.
2011AJ....142..160S viz 15       D               1 2325 365 Kepler eclipsing binary stars. II. 2165 eclipsing binaries in the second data release. SLAWSON R.W., PRSA A., WELSH W.F., et al.
2012ApJS..199...24T viz 15       D               1 5394 66 Detection of potential transit signals in the first three quarters of Kepler mission data. TENENBAUM P., CHRISTIANSEN J.L., JENKINS J.M., et al.
2014ApJS..210...19B viz 16       D               1 5860 211 Planetary candidates observed by Kepler IV: planet sample from Q1-Q8 (22 months). BURKE C.J., BRYSON S.T., MULLALLY F., et al.
2014MNRAS.437.3473A viz 16       D               1 2614 45 A catalogue of temperatures for Kepler eclipsing binary stars. ARMSTRONG D.J., GOMEZ MAQUEO CHEW Y., FAEDI F., et al.
2014AJ....147..119C viz 16       D               2 8010 91 Contamination in the Kepler field. Identification of 685 KOIs as false positives via ephemeris matching based on Q1-Q12 data. COUGHLIN J.L., THOMPSON S.E., BRYSON S.T., et al.
2015ApJS..217...16R viz 16       D               1 8625 149 Planetary candidates observed by Kepler. V. Planet sample from Q1-Q12 (36 months). ROWE J.F., COUGHLIN J.L., ANTOCI V., et al.
2015ApJ...807...45D viz 79           X         2 2707 726 The occurrence of potentially habitable planets orbiting M dwarfs estimated from the full Kepler dataset and an empirical measurement of the detection sensitivity. DRESSING C.D. and CHARBONNEAU D.
2015ApJ...813...75S 16       D               1 28 7 Measuring the number of M dwarfs Per M dwarf using Kepler eclipsing binaries. SHAN Y., JOHNSON J.A. and MORTON T.D.
2016AJ....151...68K viz 16       D               1 2914 316 Kepler eclipsing binary stars. VII. The catalog of eclipsing binaries found in the entire Kepler data set. KIRK B., CONROY K., PRSA A., et al.
2016ApJ...822...86M viz 16       D               1 6130 337 False positive probabilities for all Kepler objects of interest: 1284 newly validated planets and 428 likely false positives. MORTON T.D., BRYSON S.T., COUGHLIN J.L., et al.
2016MNRAS.457.2877G viz 56       D     X         2 4245 141 They are small worlds after all: revised properties of Kepler M dwarf stars and their planets. GAIDOS E., MANN A.W., KRAUS A.L., et al.
2016ApJ...824...15V viz 16       D               1 982 20 Orbital circularization of hot and cool Kepler eclipsing binaries. VAN EYLEN V., WINN J.N. and ALBRECHT S.
2016ApJS..224...37G viz 16       D               1 239 24 White-light flares on close binaries observed with Kepler. GAO Q., XIN Y., LIU J.-F., et al.
2017MNRAS.465.2634A viz 16       D               1 5400 21 Transit shapes and self-organizing maps as a tool for ranking planetary candidates: application to Kepler and K2. ARMSTRONG D.J., POLLACCO D. and SANTERNE A.
2017AJ....154..250L viz 16       D               1 2280 72 Tidal synchronization and differential rotation of Kepler eclipsing binaries. LURIE J.C., VYHMEISTER K., HAWLEY S.L., et al.
2018AJ....155..161Z viz 16       D               1 1274 24 Robo-AO Kepler survey. IV. The effect of nearby stars on 3857 planetary candidate systems. ZIEGLER C., LAW N.M., BARANEC C., et al.
2020ApJ...890...23L viz 17       D               1 4935 35 Current population statistics do not favor photoevaporation over core-powered mass loss as the dominant cause of the exoplanet radius gap. LOYD R.O.P., SHKOLNIK E.L., SCHNEIDER A.C., et al.
2020ApJ...892...58H 443       D     X         11 16 ~ M-dwarf eclipsing binaries with flare activity. HUANG L.-C., IP W.-H., LIN C.-L., et al.
2022ApJS..259...50S viz 18       D               1 1632 9 New Pulsating Stars Detected in EA-type Eclipsing-binary Systems Based on TESS Data. SHI X.-D., QIAN S.-B. and LI L.-J.
2022MNRAS.515.1416C 18       D               2 188 2 Detached eclipsing binaries from the Kepler field: radii and photometric masses of components in short-period systems. CRUZ P., AGUILAR J.F., GARRIDO H.E., et al.

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