TESS asteroseismology of Hydri: a subgiant with a born-again dynamo
arXiv:2408.05482 · doi:10.3847/1538-4357/ad6dd6
Abstract
The solar-type subgiant Hyi has long been studied as an old analog of the Sun. Although the rotation period has never been measured directly, it was estimated to be near 27 days. As a southern hemisphere target it was not monitored by long-term stellar activity surveys, but archival International Ultraviolet Explorer data revealed a 12 year activity cycle. Previous ground-based asteroseismology suggested that the star is slightly more massive and substantially larger and older than the Sun, so the similarity of both the rotation rate and the activity cycle period to solar values is perplexing. We use two months of precise time-series photometry from the Transiting Exoplanet Survey Satellite (TESS) to detect solar-like oscillations in Hyi and determine the fundamental stellar properties from asteroseismic modeling. We also obtain a direct measurement of the rotation period, which was previously estimated from an ultraviolet activity-rotation relation. We then use rotational evolution modeling to predict the rotation period expected from either standard spin-down or weakened magnetic braking (WMB). We conclude that the rotation period of Hyi is consistent with WMB, and that changes in stellar structure on the subgiant branch can reinvigorate the large-scale dynamo and briefly sustain magnetic activity cycles. Our results support the existence of a "born-again" dynamo in evolved subgiants -- previously suggested to explain the cycle in 94 Aqr Aa -- which can best be understood within the WMB scenario.
ApJ accepted. 8 pages including 6 figures and 2 tables
References in corpus (43)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Measuring the rotation period distribution of field M-dwarfs with Kepler
- Accurate, Empirical Radii and Masses of Planets and their Host Stars with Gaia Parallaxes
- ADIPLS -- the Aarhus adiabatic oscillation package
- Correcting stellar oscillation frequencies for near-surface effects
- ASTEC -- the Aarhus STellar Evolution Code
- Parallax Systematics and Photocenter Motions of Benchmark Eclipsing Binaries in Gaia EDR3
- A new correction of stellar oscillation frequencies for near-surface effects
- The effect of magnetic topology on thermally-driven winds: towards a general formulation of the braking law
- YREC: The Yale Rotating Stellar Evolution Code
- Empirical, Accurate Masses and Radii of Single Stars with TESS and Gaia
- Testing the recovery of stellar rotation signals from Kepler light curves using a blind hare-and-hounds exercise
- Surface rotation and photometric activity for Kepler targets. II. G and F main-sequence stars, and cool subgiant stars
- New Observational Constraints on the Winds of M Dwarf Stars
- Impact on asteroseismic analyses of regular gaps in Kepler data
- Discovery of a 1.6-year Magnetic Activity Cycle in the Exoplanet Host Star iota Horologii
- DIAMONDS: a new Bayesian Nested Sampling tool. Application to Peak Bagging of solar-like oscillations
- Gap interpolation by inpainting methods : Application to Ground and Space-based Asteroseismic data
- A Stellar Model-fitting Pipeline for Asteroseismic Data from the Kepler Mission
- Surface rotation of Kepler red giant stars
- The Effect of "Rogue" Active Regions on the Solar Cycle
- Solar-like oscillations with low amplitude in the CoRoT target HD 181906
- The Missing Magnetic Morphology Term in Stellar Rotation Evolution
- GJ 367b: A dense ultra-short period sub-Earth planet transiting a nearby red dwarf star
- A 20-Second Cadence View of Solar-Type Stars and Their Planets with TESS: Asteroseismology of Solar Analogs and a Re-characterization of pi Men c
- The BAyesian STellar Algorithm (BASTA): a fitting tool for stellar studies, asteroseismology, exoplanets, and Galactic archaeology
- Do non-dipolar magnetic fields contribute to spin-down torques?
- Five Decades of Chromospheric Activity in 59 Sun-like Stars and New Maunder Minimum Candidate HD 166620
- Asteroseismic Signatures of Stellar Magnetic Activity Cycles
- The Origin of Weakened Magnetic Braking in Old Solar Analogs
- PBjam: A Python package for automating asteroseismology of solar-like oscillators
- The radius and mass of the subgiant star bet Hyi from interferometry and asteroseismology
- The Evolution of Rotation and Magnetic Activity in 94 Aqr Aa from Asteroseismology with TESS
- Tess asteroseismology of the known planet host star Fornacis
- Magnetic and Rotational Evolution of CrB from Asteroseismology with TESS
- Fast and Automated Peak Bagging with DIAMONDS (FAMED)
- Constraints on Magnetic Braking from the G8 Dwarf Stars 61 UMa and Cet
- Deciphering stellar chorus: apollinaire, a Python 3 module for Bayesian peakbagging in helio- and asteroseismology
- Weakened Magnetic Braking in the Exoplanet Host Star 51 Peg
- Asteroseismology and Spectropolarimetry of the Exoplanet Host Star Serpentis
- Dynamo modelling for cycle variability and occurrence of grand minima in Sun-like stars: Rotation rate dependence
- Stellar spectral-type (mass) dependence of the dearth of close-in planets around fast-rotating stars. Architecture of Kepler confirmed single-exoplanet systems compared to star-planet evolution models
- Overview and Validation of the Asteroseismic Modeling Portal v2.0
Cited by in corpus (5)
- Luminaries in the Sky: The TESS Legacy Sample of Bright Stars. I. Asteroseismic detections in naked-eye main-sequence and sub-giant solar-like oscillators
- Testing the Rossby Paradigm: Weakened Magnetic Braking in early K-type Stars
- Magnetic braking and dynamo evolution of Hydri
- Beyond the Nyquist frequency: Asteroseismic catalog of undersampled Kepler late subgiants and early red giants
- Anti-Solar Differential Rotation May Have Revived Magnetic Braking in the Subgiant 31 Aquilae