K2-89 , the SIMBAD biblio

K2-89 , the SIMBAD biblio (12 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST15:28:29


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Title First 3 Authors
2010MNRAS.408..475H viz 15       D               2 1926 134 A large sample of photometric rotation periods for FGK Pleiades stars. HARTMAN J.D., BAKOS G.A., KOVACS G., et al.
2016ApJS..224....2H viz 16       D               1 31767 226 The K2 ecliptic plane input catalog (EPIC) and stellar classifications of 138,600 targets in campaigns 1-8. HUBER D., BRYSON S.T., HAAS M.R., et al.
2016ApJS..226....7C viz 16       D               4 400 165 197 candidates and 104 validated planets in K2's first five fields. CROSSFIELD I.J.M., CIARDI D.R., PETIGURA E.A., et al.
2017ApJ...836..167D viz 16       D               1 144 30 Characterizing K2 candidate planetary systems orbiting low-mass stars. I. Classifying low-mass host stars observed during Campaigns 1-7. DRESSING C.D., NEWTON E.R., SCHLIEDER J.E., et al.
2017AJ....154..207D viz 16       D               1 118 78 Characterizing K2 candidate planetary systems orbiting low-mass stars. II. Planetary systems observed during campaigns 1-7. DRESSING C.D., VANDERBURG A., SCHLIEDER J.E., 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.
2019MNRAS.485.2167G viz 17       D               1 11121 2 Recognition of M-type stars in the unclassified spectra of LAMOST DR5 using a hash-learning method. GUO Y.-X., LUO A.-L., ZHANG S., et al.
2019ApJS..244...11K viz 17       D               1 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.
2019AJ....158..135R 17       D               4 49 ~ Characterization of low-mass K2 planet hosts using near-infrared spectroscopy. RODRIGUEZ MARTINEZ R., BALLARD S., MAYO A., 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.
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.
2021AJ....162..259Z viz 17       D               1 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.

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