California-Kepler Survey (CKS). II. Properties

DOI

We present stellar and planetary properties for 1305 Kepler Objects of Interest hosting 2025 planet candidates observed as part of the California-Kepler Survey. We combine spectroscopic constraints, presented in Paper I, with stellar interior modeling to estimate stellar masses, radii, and ages. Stellar radii are typically constrained to 11%, compared to 40% when only photometric constraints are used. Stellar masses are constrained to 4%, and ages are constrained to 30%. We verify the integrity of the stellar parameters through comparisons with asteroseismic studies and Gaia parallaxes. We also recompute planetary radii for 2025 planet candidates. Because knowledge of planetary radii is often limited by uncertainties in stellar size, we improve the uncertainties in planet radii from typically 42% to 12%. We also leverage improved knowledge of stellar effective temperature to recompute incident stellar fluxes for the planets, now precise to 21%, compared to a factor of two when derived from photometry.

Cone search capability for table J/AJ/154/108/table1 (Stellar properties)

Cone search capability for table J/AJ/154/108/table4 (California-Kepler Survey (CKS) planet parameters)

Identifier
DOI http://doi.org/10.26093/cds/vizier.51540108
Source https://dc.g-vo.org/rr/q/lp/custom/CDS.VizieR/J/AJ/154/108
Related Identifier https://cdsarc.cds.unistra.fr/viz-bin/cat/J/AJ/154/108
Related Identifier http://vizier.cds.unistra.fr/viz-bin/VizieR-2?-source=J/AJ/154/108
Metadata Access http://dc.g-vo.org/rr/q/pmh/pubreg.xml?verb=GetRecord&metadataPrefix=oai_b2find&identifier=ivo://CDS.VizieR/J/AJ/154/108
Provenance
Creator Johnson J.A.; Petigura E.A.; Fulton B.J.; Marcy G.W.; Howard A.W.,Isaacson H.; Hebb L.; Cargile P.A.; Morton T.D.; Weiss L.M.; Winn J.N.,Rogers L.A.; Sinukoff E.; Hirsch L.A.
Publisher CDS
Publication Year 2017
Rights https://cds.unistra.fr/vizier-org/licences_vizier.html
OpenAccess true
Contact CDS support team <cds-question(at)unistra.fr>
Representation
Resource Type Dataset; AstroObjects
Discipline Astrophysics and Astronomy; Interdisciplinary Astronomy; Natural Sciences; Observational Astronomy; Physics; Solar System Astronomy; Stellar Astronomy