The HARPS search for southern extra-solar planets – XLV. Two Neptune mass planets orbiting HD 13808: a study of stellar activity modelling’s impact on planet detection

Author:

Ahrer E12ORCID,Queloz D13,Rajpaul V M1ORCID,Ségransan D3,Bouchy F3,Hall R1ORCID,Handley W14ORCID,Lovis C3,Mayor M3,Mortier A14ORCID,Pepe F3,Thompson S1,Udry S3,Unger N3ORCID

Affiliation:

1. Astrophysics Group, Cavendish Laboratory, JJ Thomson Avenue, CB3 0HE Cambridge, UK

2. Department of Physics, University of Warwick, Gibbet Hill Road, CV4 7AL Coventry, UK

3. Departement d’astronomie, Université de Genève, Chemin des Maillettes 51, CH-1290 Versoix, Switzerland

4. Kavli Institute for Cosmology, Cambridge, Madingley Road, CB3 0HA Cambridge, UK

Abstract

ABSTRACT We present a comprehensive analysis of 10 yr of HARPS radial velocities (RVs) of the K2V dwarf star HD 13808, which has previously been reported to host two unconfirmed planet candidates. We use the state-of-the-art nested sampling algorithm PolyChord to compare a wide variety of stellar activity models, including simple models exploiting linear correlations between RVs and stellar activity indicators, harmonic models for the activity signals, and a more sophisticated Gaussian process regression model. We show that the use of overly simplistic stellar activity models that are not well-motivated physically can lead to spurious ‘detections’ of planetary signals that are almost certainly not real. We also reveal some difficulties inherent in parameter and model inference in cases where multiple planetary signals may be present. Our study thus underlines the importance both of exploring a variety of competing models and of understanding the limitations and precision settings of one’s sampling algorithm. We also show that at least in the case of HD 13808, we always arrive at consistent conclusions about two particular signals present in the RV, regardless of the stellar activity model we adopt; these two signals correspond to the previously reported though unconfirmed planet candidate signals. Given the robustness and precision with which we can characterize these two signals, we deem them secure planet detections. In particular, we find two planets orbiting HD 13808 at distances of 0.11, 0.26 au with periods of 14.2, 53.8 d, and minimum masses of 11, 10 M⊕.

Funder

Engineering and Physical Sciences Research Council

Science and Technology Facilities Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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