Photometric variability of the LAMOST sample of magnetic chemically peculiar stars as seen by TESS
J. Labadie-Bartz, S. H\"ummerich, K. Bernhard, E. Paunzen, M. E., Shultz

TL;DR
This study analyzes TESS space-based photometry of 782 magnetic chemically peculiar stars from the LAMOST sample to measure their rotational periods, identify binary and pulsating stars, and explore correlations with stellar properties.
Contribution
It provides rotational period measurements for 720 mCP stars, identifies binary and pulsating candidates, and enhances the sample for future population and detailed studies.
Findings
720 mCP stars have measured rotational periods.
Identified 4 eclipsing binary systems with mCP stars.
Discovered 25 stars with pulsation signals.
Abstract
High-quality light curves from space missions have opened up a new window on the rotational and pulsational properties of magnetic chemically peculiar (mCP) stars and have fuelled asteroseismic studies. They allow the internal effects of surface magnetic fields to be probed and numerous astrophysical parameters to be derived with great precision. We present an investigation of the photometric variability of a sample of 1002 mCP stars discovered in the LAMOST archival spectra with the aims of measuring their rotational periods and identifying interesting objects for follow-up studies. TESS photometry was available for 782 mCP stars and was analysed using a Fourier two-term frequency fit to determine the stars' rotational periods. The rotational signal was then subtracted from the light curve to identify non-rotational variability. A pixel-level blending analysis was performed to check…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astro and Planetary Science · Astronomy and Astrophysical Research
