André M Silva

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University of Porto
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A new paradigm for the estimation of precise stellar radial velocities: towards the development of an innovative data analysis software,

Open Date: 2021-01-01

Close Date: 2024-12-31

Grant: Close

Exploring exoPlanets wIth CHEOPS (EPIC)

Open Date: 2020-11-15

Close Date: 2020-12-31

Articles (9)

Characterization of K2-167 b and CALM, a new stellar activity mitigation method

We report precise radial velocity (RV) observations of HD 212657 (= K2-167), a star shown by K2 to host a transiting sub-Neptune-sized planet in a 10 d orbit. Using Transiting Exoplanet Survey Satellite (TESS) photometry, we refined the planet parameters, especially the orbital period. We collected 74 precise RVs with the HARPS-N spectrograph between August 2015 and October 2016. Although this planet was first found to transit in 2015 and validated in 2018, excess RV scatter originally limited mass measurements. Here, we measure a mass by taking advantage of reductions in scatter from updates to the HARPS-N Data Reduction System (2.3.5) and our new activity mitigation method called CCF Activity Linear Model (CALM), which uses activity-induced line shape changes in the spectra without requiring timing information. Using the CALM framework, we performed a joint fit with RVs and transits using exofastv2 and find Mp = $6.3_{-1.4}^{+1.4}$ $\, M_{\hbox{$\oplus $}}$ and Rp = $2.33^{+0.17}_{-0.15}$ $\, R_{\hbox{$\oplus $}}$, which places K2-167 b at the upper edge of the radius valley. We also find hints of a secondary companion at a ∼22 d period, but confirmation requires additional RVs. Although characterizing lower mass planets like K2-167 b is often impeded by stellar variability, these systems especially help probe the formation physics (i.e. photoevaporation, core-powered mass-loss) of the radius valley. In the future, CALM or similar techniques could be widely applied to FGK-type stars, help characterize a population of exoplanets surrounding the radius valley, and further our understanding of their formation.

Year:

2024

Collaborators (9)

E. González-Álvarez

Universidad Complutense de Madrid

SPAIN

Angel Berihuete

Profesor Contratado Doctor

Universidad de Cádiz

SPAIN

Pedro Figueira

Maitre Assistant / Research & Teaching Fellow

University of Geneva

SWITZERLAND

Nelson Nunes

Professor

Faculdade de Ciências da Universidade de Lisboa

PORTUGAL

Eloy Rodríguez

Instituto de Astrofísica de Andalucía

SPAIN

Sérgio Sousa

Assistant Professor (25% part-time)

Universidade do Porto Faculdade de Engenharia

PORTUGAL

Lars A. Buchhave

Technical University of Denmark

DENMARK

Nuno Santos

Professor Auxiliar

Faculdade de Ciências da Universidade de Lisboa

PORTUGAL

David Galadí-Enríquez

Assistant professor

Universidad de Córdoba

SPAIN
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