Time evolution of magnetic activity cycles in young suns: The curious case of kappa Ceti
arXiv:2110.06000 · doi:10.1051/0004-6361/202141525
Abstract
A detailed investigation of the magnetic properties of young Sun-like stars can provide valuable information on our Sun's magnetic past and its impact on the early Earth. We determine the properties of the moderately rotating young Sun-like star kappa Ceti's magnetic and activity cycles using 50 years of chromospheric activity data and six epochs of spectropolarimetric observations. The chromospheric activity was determined by measuring the flux in the Ca II H and K lines. A generalised Lomb-Scargle periodogram and a wavelet decomposition were used on the chromospheric activity data to establish the associated periodicities. The vector magnetic field of the star was reconstructed using the technique of Zeeman Doppler imaging on the spectropolarimetric observations. Our period analysis algorithms detect a 3.1 year chromospheric cycle in addition to the star's well-known ~6 year cycle period. Although the two cycle periods have an approximate 1:2 ratio, they exhibit an unusual temporal evolution. Additionally, the spectropolarimetric data analysis shows polarity reversals of the star's large-scale magnetic field, suggesting a ~10 year magnetic or Hale cycle. The unusual evolution of the star's chromospheric cycles and their lack of a direct correlation with the magnetic cycle establishes kappa Ceti as a curious young Sun. Such complex evolution of magnetic activity could be synonymous with moderately active young Suns, which is an evolutionary path that our own Sun could have taken.
15 pages including appendices, accepted for publication in A&A
References in corpus (20)
- The generalised Lomb-Scargle periodogram. A new formalism for the floating-mean and Keplerian periodograms
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Toroidal versus poloidal magnetic fields in Sun-like stars: a rotation threshold
- Stellar Winds on the Main-Sequence II: the Evolution of Rotation and Winds
- Magnetic cycles of the planet-hosting star tauBootis
- The evolution of surface magnetic fields in young solar-type stars II: The early main sequence (250-650 Myr)
- Magnetic Activity Cycles in the Exoplanet Host Star epsilon Eridani
- Hidden magnetic fields of young suns
- First Zeeman Doppler imaging of a cool star using all four Stokes parameters
- Extreme hydrodynamic losses of Earth-like atmospheres in the habitable zones of very active stars
- Variable magnetic field geometry of the young sun HN Peg (HD 206860)
- Magnetic fields on young, moderately rotating Sun-like stars II. EK Draconis (HD 129333)
- An X-ray activity cycle on the young solar-like star
- The young Sun's XUV-activity as a constraint for lower CO-limits in the Earth's Archean atmosphere
- Chromospheric activity and evolutionary age of the Sun and four solar twins
- The relation between stellar magnetic field geometry and chromospheric activity cycles I: The highly variable field of Epsilon Eridani at activity minimum
- Multi-instrumental view of magnetic fields and activity of Eridani with SPIRou, NARVAL, and TESS
- Observing and modeling the poloidal and toroidal fields of the solar dynamo
- One Year in the Life of Young Suns: Data Constrained Corona-Wind Model of kappa1 Ceti
- Identifying solar-like magnetic cycles with Zeeman-Doppler-Imaging (ZDI)
Cited by in corpus (7)
- Monitoring the large-scale magnetic field of AD~Leo with SPIRou, ESPaDOnS and Narval. Toward a magnetic polarity reversal?
- Zeeman-Doppler imaging of five young solar-type stars
- A BCool survey of stellar magnetic cycles
- Far beyond the Sun: II. Probing the stellar magnetism of the young Sun ι Horologii from the photosphere to its corona
- Star-Planet Interactions: A Computational View
- Do Cellular Automaton Avalanche Models Simulate the Quasi-Periodic Pulsations of Solar Flares?
- Far beyond the Sun: III. The magnetic cycle of Horologii