Decoding the radial velocity variations of HD41248 with ESPRESSO
arXiv:1911.11714 · doi:10.1051/0004-6361/201936389
Abstract
Twenty-four years after the discoveries of the first exoplanets, the radial-velocity (RV) method is still one of the most productive techniques to detect and confirm exoplanets. But stellar magnetic activity can induce RV variations large enough to make it difficult to disentangle planet signals from the stellar noise. In this context, HD41248 is an interesting planet-host candidate, with RV observations plagued by activity-induced signals. We report on ESPRESSO observations of HD41248 and analyse them together with previous observations from HARPS with the goal of evaluating the presence of orbiting planets. Using different noise models within a general Bayesian framework designed for planet detection in RV data, we test the significance of the various signals present in the HD41248 dataset. We use Gaussian processes as well as a first-order moving average component to try to correct for activity-induced signals. At the same time, we analyse photometry from the TESS mission, searching for transits and rotational modulation in the light curve. The number of significantly detected Keplerian signals depends on the noise model employed, which can range from 0 with the Gaussian process model to 3 with a white noise model. We find that the Gaussian process alone can explain the RV data while allowing for the stellar rotation period and active region evolution timescale to be constrained. The rotation period estimated from the RVs agrees with the value determined from the TESS light curve. Based on the data that is currently available, we conclude that the RV variations of HD41248 can be explained by stellar activity (using the Gaussian process model) in line with the evidence from activity indicators and the TESS photometry.
Accepted for publication in A&A
References in corpus (21)
- The Gaia mission
- The Transiting Exoplanet Survey Satellite
- The Dartmouth Stellar Evolution Database
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- Planets and Stellar Activity: Hide and Seek in the CoRoT-7 system
- A new code for automatic determination of equivalent widths: Automatic Routine for line Equivalent widths in stellar Spectra (ARES)
- The solar magnetic field
- Transit Least Squares: Optimized transit detection algorithm to search for periodic transits of small planets
- A Kepler Study of Starspot Lifetimes with Respect to Light Curve Amplitude and Spectral Type
- Three years of Sun-as-a-star radial-velocity observations on the approach to solar minimum
- BGLS: A Bayesian formalism for the generalised Lomb-Scargle periodogram
- Exploring the alpha-enhancement of metal-poor planet-hosting stars. The Kepler and HARPS samples
- The HARPS search for southern extra-solar planets XXXV. The interesting case of HD41248: stellar activity, no planets?
- Kepler-21b: A rocky planet around a V = 8.25 magnitude star
- New planetary and EB candidates from Campaigns 1-6 of the K2 mission
- Oxygen abundances in G- and F-type stars from HARPS
- Characterization of the K2-18 multi-planetary system with HARPS: A habitable zone super-Earth and discovery of a second, warm super-Earth on a non-coplanar orbit
- Filtering solar-like oscillations for exoplanet detection in radial velocity observations
- A new Neptune-mass planet orbiting HD 219828
- Inflection point in the power spectrum of stellar brightness variations. I. The model
- The curious case of HD41248. A pair of static signals buried behind red-noise
Cited by in corpus (4)
- Stellar chromospheric activity of 1,674 FGK stars from the AMBRE-HARPS sample I. A catalogue of homogeneous chromospheric activity
- Revisiting Proxima with ESPRESSO
- 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
- Constraining the oblateness of transiting planets with photometry and spectroscopy