K2-268 , the SIMBAD biblio

K2-268 , the SIMBAD biblio (16 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST18:17:13


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Title First 3 Authors
2016MNRAS.461.3399P 16       D               1 174 76 Transiting exoplanet candidates from K2 Campaigns 5 and 6. POPE B.J.S., PARVIAINEN H. and AIGRAIN S.
2016A&A...594A.100B viz 16       D               2 531 86 New planetary and eclipsing binary candidates from campaigns 1-6 of the K2 mission. BARROS S.C.C., DEMANGEON O. and DELEUIL M.
2016MNRAS.463.1831N viz 459       D S   X   F     10 11 13 A PSF-based approach to Kepler/K2 data - III. Search for exoplanets and variable stars within the open cluster M 67 (NGC 2682). NARDIELLO D., LIBRALATO M., BEDIN L.R., et al.
2018AJ....155...21P viz 16       D               2 354 28 Planet candidates from K2 campaigns 5-8 and follow-up optical spectroscopy. PETIGURA E.A., CROSSFIELD I.J.M., ISAACSON H., et al.
2018AJ....156..277L viz 140       D     X         4 306 50 Sixty validated planets from K2 campaigns 5-8. LIVINGSTON J.H., CROSSFIELD I.J.M., PETIGURA E.A., et al.
2019AJ....157..124K viz 17       D               1 603 7 Discovery and Vetting of Exoplanets. I. Benchmarking K2 vetting tools. KOSTOV V.B., MULLALLY S.E., QUINTANA E.V., et al.
2019ApJS..244...11K viz 59       D     X         2 2120 48 Detection of hundreds of new planet candidates and eclipsing binaries in K2 campaigns 0-8. KRUSE E., AGOL E., LUGER R., et al.
2020ApJ...890...23L viz 17       D               2 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.
2020AJ....159..154Z viz 102       D     X         3 75 ~ Scaling K2. II. Assembly of a fully automated C5 planet candidate catalog using EDI-Vetter. ZINK J.K., HARDEGREE-ULLMAN K.K., CHRISTIANSEN J.L., et al.
2021ApJ...909..115C viz 17       D               1 2175 13 Planets Across Space and Time (PAST). I. Characterizing the memberships of Galactic components and stellar ages: revisiting the kinematic methods and applying to planet host stars. CHEN D.-C., XIE J.-W., ZHOU J.-L., et al.
2021MNRAS.508..195D 453       D     X C       10 173 14 37 new validated planets in overlapping K2 campaigns. DE LEON J.P., LIVINGSTON J., ENDL M., et al.
2021AJ....162..259Z viz 17       D               5 1094 12 Scaling K2. IV. A uniform planet sample for Campaigns 1-8 and 10-18. ZINK J.K., HARDEGREE-ULLMAN K.K., CHRISTIANSEN J.L., et al.
2021RAA....21..292W viz 17       D               2 9395 19 LAMOST Time-Domain survey: first results of four K2 plates. WANG S., ZHANG H.-T., BAI Z.-R., et al.
2022ApJS..261...26S viz 18       D               17 1893 2 Magnetic Activity and Physical Parameters of Exoplanet Host Stars Based on LAMOST DR7, TESS, Kepler, and K2 Surveys. SU T., ZHANG L.-Y., LONG L., et al.
2023A&A...669A..44K 47           X         1 19 2 Mean motion resonance capture in the context of type I migration. KAJTAZI K., PETIT A.C. and JOHANSEN A.
2023AJ....166...94M 19       D               3 105 ~ exoMMR: A New Python Package to Confirm and Characterize Mean Motion Resonances. MacDONALD M.G., POLANIA VIVAS M.S., D'ANGIOLILLO S., et al.

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