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TESS Stellar Rotation up to 80 days in the Southern Continuous Viewing Zone

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arxiv 2307.05664 v2 pith:D4O5TJRO submitted 2023-07-11 astro-ph.SR astro-ph.EP

TESS Stellar Rotation up to 80 days in the Southern Continuous Viewing Zone

classification astro-ph.SR astro-ph.EP
keywords rotationperiodsstellardaysstarsdwarfstesscontinuous
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The TESS mission delivers time-series photometry for millions of stars across the sky, offering a probe into stellar astrophysics, including rotation, on a population scale. However, light curve systematics related to the satellite's 13.7-day orbit have prevented stellar rotation searches for periods longer than 13 days, putting the majority of stars beyond reach. Machine learning methods have the ability to identify systematics and recover robust signals, enabling us to recover rotation periods up to 35 days for GK dwarfs and 80 days for M dwarfs. We present a catalog of 7245 rotation periods for cool dwarfs in the Southern Continuous Viewing Zone, estimated using convolutional neural networks. We find evidence for structure in the period distribution consistent with prior Kepler and K2 results, including a gap in 10--20-day cool star periods thought to arise from a change in stellar spin-down or activity. Using a combination of spectroscopic and gyrochronologic constraints, we fit stellar evolution models to estimate masses and ages for stars with rotation periods. We find strong correlations between the detectability of rotation in TESS and the effective temperature, age, and metallicity of the stars. Finally, we investigate the relationships between rotation and newly obtained spot filling fractions estimated from APOGEE spectra. Field star spot filling fractions are elevated in the same temperature and period regime where open clusters' magnetic braking stalls, lending support to an internal shear mechanism that can produce both phenomena.

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Forward citations

Cited by 2 Pith papers

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  2. Selected Results on Variable Stars Observed by TESS

    astro-ph.SR 2025-09 unverdicted

    A curated review of TESS-era results across the major classes of variable stars, with illustrative light curves, but with no new observational or theoretical result.