The Magnetic Fields at the Surface of Active Single G-K Giants
M. Auri\`ere, R. Konstantinova-Antova, C. Charbonnel, G.A. Wade, S., Tsvetkova, P. Petit, B. Dintrans, N. A. Drake, T. Decressin, N. Lagarde,, J.-F. Donati, T. Roudier, F. Ligni\`eres, K.-P. Schr\"oder, J.D. Landstreet,, A. L\`ebre, W.W. Weiss, J-P Zahn

TL;DR
This study detects and analyzes magnetic fields in 48 red giants, revealing a strong link between magnetic activity, stellar evolution stages, and rotation, and identifying potential descendants of magnetic Ap stars.
Contribution
It provides the first comprehensive survey of surface magnetic fields in red giants, establishing their dynamo origin and evolutionary phase dependence.
Findings
Magnetic fields detected in 29 of 48 giants.
Magnetic activity correlates with evolutionary phase and rotation.
Identification of probable descendants of magnetic Ap stars.
Abstract
We investigate the magnetic field at the surface of 48 red giants selected as promising for detection of Stokes V Zeeman signatures in their spectral lines. We use the spectropolarimeters Narval and ESPaDOnS to detect circular polarization within the photospheric absorption lines of our targets and use the least-squares deconvolution (LSD) method. We also measure the classical S-index activity indicator, and the stellar radial velocity. To infer the evolutionary status of our giants and to interpret our results, we use state-of-the-art stellar evolutionary models with predictions of convective turnover times. We unambiguously detect magnetic fields via Zeeman signatures in 29 of the 48 red giants in our sample. Zeeman signatures are found in all but one of the 24 red giants exhibiting signs of activity, as well as 6 out of 17 bright giant stars.The majority of the magnetically detected…
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