Stellar activity correction using PCA decomposition of shells
arXiv:2202.05902 · doi:10.1051/0004-6361/202142435
Abstract
Context. Stellar activity and instrumental signals are the main limitations to the detection of Earth-like planets using the radial velocity (RV) technique. Recent studies show that the key to mitigating those perturbing effects might reside in analysing the spectra themselves, rather than the RV time series and a few activity proxies. Aims. The goal of this paper is to demonstrate that we can reach further improvement in RV precision by performing a principal component analysis (PCA) decomposition of the shell time series, with the shell as the projection of a spectrum onto the spacenormalised flux versus flux gradient. Methods. By performing a PCA decomposition of shell time series, it is possible to obtain a basis of first-order spectral variations that are not related to Keplerian motion. The time coeffcients associated with this basis can then be used to correct for non-Dopplerian signatures in RVs. Results. We applied this new method on the YARARA post-processed spectra time series of HD10700 and HD128621. On HD10700, we demonstrate, thanks to planetary signal injections, that this new approach can successfully disentangle real Dopplerian signals from instrumental systematics. The application of this new methodology on HD128621 shows that the strong stellar activity signal seen at the stellar rotational period and one-year aliases becomes insignificant in a periodogram analysis. The RV root mean square on the five-year data is reduced from 2.44 m/s down to 1.73 m/s. This new approach allows us to strongly mitigate stellar activity, however, noise injections tests indicate that rather high signal-to-noise ratio (S/N>250) is required to correct for the observed activity signal on HD128621.
References in corpus (18)
- Spectrum radial velocity analyser (SERVAL). High-precision radial velocities and two alternative spectral indicators
- SOAP 2.0: A tool to estimate the photometric and radial velocity variations induced by stellar spots and plages
- TW Hydrae: evidence of stellar spots instead of a Hot Jupiter
- Three years of Sun-as-a-star radial-velocity observations on the approach to solar minimum
- Revisiting Proxima with ESPRESSO
- Measuring precise radial velocities on individual spectral lines : II. Dependance of stellar activity signal on line depth
- Color difference makes a difference: four planet candidates around tau Ceti
- HARPS-N Solar Radial-Velocity Variations Are Dominated By Large, Bright Magnetic Regions
- Towards Understanding Stellar Radial Velocity Jitter as a Function of Wavelength: The Sun as a Proxy
- The hot Jupiter of the magnetically-active weak-line T Tauri star V830 Tau
- RASSINE: Interactive tool for normalising stellar spectra I. Description and performance of the code
- Insights on the Spectral Signatures of Stellar Activity and Planets from PCA
- Convective blueshifts in the solar atmosphere: III. High-accuracy observations of spectral lines in the visible
- The Changing Face of Centauri B: Probing plage and stellar activity in K-dwarfs
- Hubble Space Telescope search for the transit of the Earth-mass exoplanet Alpha Centauri Bb
- EXPRES I. HD~3651 an Ideal RV Benchmark
- Target Prioritization and Observing Strategies for the NEID Earth Twin Survey
- Recovering planet radial velocity signals in the presence of starspot activity in fully convective stars