Magnetic field of the roAp star KIC~10685175: observations versus theory
Fangfei Shi, Huawei Zhang, Swetlana Hubrig, Silva Jarvinen, Huiling, Chen, Tianqi Cang, Jianning Fu, Donald Kurtz

TL;DR
This study measures the magnetic field of the roAp star KIC 10685175 using spectropolarimetry and finds it consistent with theoretical predictions, supporting the pulsation model for such stars.
Contribution
First spectropolarimetric measurement of KIC 10685175's magnetic field confirming theoretical predictions.
Findings
Measured magnetic field of approximately 4.8 kG, consistent with 6 kG prediction within uncertainties.
Detected peculiar chemical abundance patterns, especially strong rare earth element lines.
No significant line profile variability observed, indicating stable surface features.
Abstract
KIC 10685175 is a roAp star whose polar magnetic field is predicted to be 6 kG through a non-adiabatic axisymmetric pulsation theoretical model. In this work, we aim to measure the magnetic field strength of KIC 10685175 using high-resolution spectropolarimetric observations, and compare it with the one predicted by the theoretical model. From the study of two high-resolution unpolarized spectra, we obtained [, , [Fe/H], [/Fe], ]=[8250 200\,K, 4.4 0.1, -0.4 0.2, 0.16 0.1, 1.73 0.2\,km~s]. Although the Fe absorption lines appear relatively weak in comparison to typical Ap stars with similar , the lines belonging to rare earth elements (Eu and Nd) are stronger than that in chemically normal stars, indicating the peculiar nature of KIC~10685175. The mean longitudinal magnetic field $\langle B_\ell…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astrophysical Phenomena and Observations · Astronomical Observations and Instrumentation
