Temporal variation of the photometric magnetic activity for the Sun and Kepler solar-like stars
arXiv:2304.03165 · doi:10.1051/0004-6361/202245430
Abstract
The photometric time series of solar-like stars can exhibit rotational modulation due to active regions co-rotating with the stellar surface, allowing us to constrain stellar rotation and magnetic activity. In this work we investigate the behavior, particularly the variability, of the photometric magnetic activity of Kepler solar-like stars and compare it with that of the Sun. We adopted the photometric magnetic activity proxy Sph, which was computed with a cadence of 5 x the rotation period, Prot. The average Sph was taken as the mean activity level, and the standard deviation was taken as a measure of the temporal variation of the magnetic activity over the observations. We also analyzed Sun-as-a-star photometric data from VIRGO. Sun-like stars were selected from a very narrow parameter space around the solar properties. We also looked into KIC 8006161 (HD 173701), an active metal-rich G dwarf, and we compared its magnetic activity to that of stars with similar stellar parameters. We find that the amplitude of Sph variability is strongly correlated with its mean value, independent of spectral type. An equivalent relationship has been found for ground-based observations of chromospheric activity emission and magnetic field strength, but in this work we show that photometric Kepler data also present the same behavior. While, depending on the cycle phase, the Sun is among the less active stars, we find that the solar Sph properties are consistent with those observed in Kepler Sun-like stars. KIC 8006161 is, however, among the most active of its peers, which tend to be metal-rich. This results from an underlying relationship between Prot and metallicity and supports the following interpretation of the magnetic activity of KIC 8006161: its strong activity is a consequence of its high metallicity, which affects the depth of the convection zone and, consequently, the efficiency of the dynamo.
Published in A&A; 12 pages including 11 figures and 3 tables (main text); 10 additional pages including 17 figures and 5 tables (appendix)
References in corpus (29)
- The Gaia mission
- The K2 Mission: Characterization and Early results
- Standing on the shoulders of Dwarfs: the Kepler asteroseismic LEGACY sample II - radii, masses, and ages
- The Mass-Dependence of Angular Momentum Evolution in Sun-Like Stars
- Standing on the shoulders of Dwarfs: the asteroseismic LEGACY sample I - oscillation mode parameters
- CoRoT reveals a magnetic activity cycle in a Sun-like star
- Patterns of photometric and chromospheric variation among Sun-like stars: A 20-year perspective
- A Kepler Study of Starspot Lifetimes with Respect to Light Curve Amplitude and Spectral Type
- Surface rotation and photometric activity for Kepler targets. II. G and F main-sequence stars, and cool subgiant stars
- Impact on asteroseismic analyses of regular gaps in Kepler data
- Stellar chromospheric activity of 1,674 FGK stars from the AMBRE-HARPS sample I. A catalogue of homogeneous chromospheric activity
- The Sun is less active than other solar-like stars
- Gap interpolation by inpainting methods : Application to Ground and Space-based Asteroseismic data
- Surface rotation of Kepler red giant stars
- Magnetic Activity Cycles in the Exoplanet Host Star epsilon Eridani
- Stellar rotation periods from K2 Campaigns 0-18 -- Evidence for rotation period bimodality and simultaneous variability decrease
- The influence of metallicity on stellar differential rotation and magnetic activity
- The Impact of Metallicity on the Evolution of Rotation and Magnetic Activity of Sun-Like Stars
- Photospheric and chromospheric magnetic activity of seismic solar analogs. Observational inputs on the solar/stellar connection from Kepler and Hermes
- Stellar magnetic activity and variability of oscillation parameters - An investigation of 24 solar-like stars observed by Kepler
- Chemical Evolution in the Milky Way: Rotation-based ages for APOGEE-Kepler cool dwarf stars
- Exploring the evolution of stellar rotation using Galactic kinematics
- Photospheric activity of the Sun with VIRGO and GOLF: Comparison with standard activity proxies
- Bridging the gap -- the disappearance of the intermediate period gap for fully convective stars, uncovered by new ZTF rotation periods
- A Comparison Between Global Proxies of the Sun's Magnetic Activity Cycle: Inferences from Helioseismology
- ROOSTER: a machine-learning analysis tool for Kepler stellar rotation periods
- Cycle dependency of a quasi-biennial variability in the solar interior
- On the relation between active-region lifetimes and the autocorrelation function of light curves
- A detailed understanding of the rotation-activity relationship using the 300 Myr old open cluster NGC 3532