SIMBAD references

2017MNRAS.464..850G - Mon. Not. R. Astron. Soc., 464, 850-862 (2017/January-1)

Zodiacal exoplanets in time (ZEIT) - II. A 'super-Earth' orbiting a young K dwarf in the Pleiades Neighbourhood.

GAIDOS E., MANN A.W., RIZZUTO A., NOFI L., MACE G., VANDERBURG A., FEIDEN G., NARITA N., TAKEDA Y., ESPOSITO T.M., DE ROSA R.J., ANSDELL M., HIRANO T., GRAHAM J.R., KRAUS A. and JAFFE D.

Abstract (from CDS):

We describe a 'super-Earth'-size (2.30 ± 0.16 R) planet transiting an early K-type dwarf star in the Campaign 4 field observed by the K2 mission. The host star, EPIC 210363145, was identified as a candidate member of the approximately 120 Myr-old Pleiades cluster based on its kinematics and photometric distance. It is rotationally variable and exhibits near-ultraviolet emission consistent with a Pleiades age, but its rotational period is ≃20 d and its spectrum contains no Hα emission nor the Li I absorption expected of Pleiades K dwarfs. Instead, the star is probably an interloper that is unaffiliated with the cluster, but younger (<=1.3 Gyr) than the typical field dwarf. We ruled out a false positive transit signal produced by confusion with a background eclipsing binary by adaptive optics imaging and a statistical calculation. Doppler radial velocity measurements limit the companion mass to <2 times that of Jupiter. Screening of the light curves of 1014 potential Pleiades candidate stars uncovered no additional planets. An injection-and-recovery experiment using the K2 Pleiades light curves with simulated planets, assuming a planet population like that in the Kepler prime field, predicts only 0.8-1.8 detections (versus ∼20 in an equivalent Kepler sample). The absence of Pleiades planet detections can be attributed to the much shorter monitoring time of K2 (80 d versus 4 yr), increased measurement noise due to spacecraft motion, and the intrinsic noisiness of the stars.

Abstract Copyright: © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): planets and satellites: general - stars: low-mass - planetary systems - open clusters and associations: individual: Pleiades - open clusters and associations: individual: Pleiades

Simbad objects: 12

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