Zeeman-Doppler imaging of five young solar-type stars
T. Willamo, J. J. Lehtinen, T. Hackman, M. J. K\"apyl\"a, O., Kochukhov, S. V. Jeffers, H. Korhonen, and S. C. Marsden

TL;DR
This study uses Zeeman-Doppler imaging to map magnetic fields of five young solar-type stars, revealing potential magnetic polarity reversals and insights into stellar magnetic cycles, with implications for understanding stellar and solar dynamos.
Contribution
First application of Zeeman-Doppler imaging to five young solar-type stars to identify magnetic cycle features and polarity reversals, expanding knowledge of stellar magnetic activity.
Findings
Detected magnetic polarity reversal in V1358 Ori.
Observed a possible short magnetic cycle in Ori.
Found a correlation between activity and magnetic field components, with more active stars showing more axisymmetric and toroidal fields.
Abstract
The magnetic activity of the Sun changes with the solar cycle. Similar cycles are found in other stars as well, but their details are not known to a similar degree. Characterising stellar magnetic cycles is important for the understanding of the stellar and solar dynamos that are driving the magnetic activity. We present spectropolarimetric observations of five young, solar-type stars, and compare them to previous observations, with the aim to identify and characterise stellar equivalents of the solar cycle. We use Zeeman-Doppler imaging (ZDI) to map the surface magnetic field and brightness of our targets. The magnetic field is decomposed into spherical harmonic expansions, from which we report the strengths of the axisymmetric vs. non-axisymmetric, and poloidal vs. toroidal components, and compare them to the Rossby numbers of the stars. We present five new ZDI-maps of young,…
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