Simulating starspot activity jitter for spectral types F--M: realistic estimates for a representative sample of known exoplanet hosts
arXiv:2108.10204 · doi:10.1002/asna.20210003
Abstract
Dark spots on the surface of active stars produce changes in the shapes of the spectral lines that mimic spurious Doppler shifts, compromising the detection of small planets by means of the radial velocity (RV) technique. Modelling the spot-driven RV variability (known as ``jitter'') and how it affects the RV data sets is therefore crucial to design efficient activity-filtering techniques and inform observing strategies. Here, we characterise starspots and simulate the radial velocity curves induced by them to determine typical jitter amplitudes for a representative sample of 15 known host stars spanning between F and M spectral type. We collect information on the activity index from the literature for 205 stars and, due to a lack of data in the temperature range 4000-4500 K, we measure it for ten stars using archival data. Additional stellar parameters required for the simulations are collected from the literature or constrained by observational data, in order to derive realistic estimates. Our results can be used as reference to determine typical peak-to-peak spot-induced RV jitter in the visible domain that can be expected when targeting host stars with different properties.
15 pages, 4 tables and 11 figures
References in corpus (10)
- Contributions to the Nearby Stars (NStars) Project: Spectroscopy of Stars Earlier than M0 within 40 parsecs: The Southern Sample
- Planets and Stellar Activity: Hide and Seek in the CoRoT-7 system
- The Exoplanet Orbit Database II: Updates to exoplanets.org
- HAT-P-5b: A Jupiter-like hot Jupiter Transiting a Bright Star
- Stellar activity as noise in exoplanet detection II. Application to M dwarfs
- Star Spot Induced Radial Velocity Variability in LkCa 19
- Multi-instrumental view of magnetic fields and activity of Eridani with SPIRou, NARVAL, and TESS
- Stellar activity as noise in exoplanet detection I. Methods and application to solar-like stars and activity cycles
- Forward modelling of Kepler-band variability due to faculae and spots
- Stellar variability in radial velocity