Testing Angular Momentum Transport and Wind Loss in Intermediate Mass Core Helium Burning Stars
arXiv:1806.10649 · doi:10.3847/1538-4357/aae979
Abstract
Stars between two and three solar masses rotate rapidly on the main sequence, and their rotation rates in the core helium burning (secondary clump) phase can therefore be used to test models of angular momentum loss used for gyrochronology in a new regime. Because both their core and surface rotation rates can be measured, these stars can also be used to set strong constraints on angular momentum transport inside stars. We find that they are rotating slower than angular momentum conservation and rigid rotation would predict. Our results are insensitive to the degree of core-envelope coupling because of the small moment of inertia of the radiative core. We discuss two possible mechanisms for slowing down the surfaces of these stars: (1) substantial angular momentum loss, and (2) radial differential rotation in the surface convection zone. Modern angular momentum loss prescriptions used for solar-type stars predict secondary clump surface rotation rates in much better agreement with the data than prior variants used in the literature, and we argue that such enhanced loss is required to understand the combination of core and surface rotation rates. However, we find that the assumed radial differential rotation profile in convective regions has a strong impact on the predicted surface rotation rates, and that a combination of enhanced loss and radial differential rotation in the surface convection zone is also consistent with the data. We discuss future tests that can quantify the impact of both phenomena. Current data tentatively suggests that some combination of the two processes fits the data better than either one alone.
15 pages, 13 figures. Submitted to AAS Journals
References in corpus (12)
- The APOKASC Catalog: An Asteroseismic and Spectroscopic Joint Survey of Targets in the Kepler Fields
- The Mass-Dependence of Angular Momentum Evolution in Sun-Like Stars
- Asteroseismic measurement of surface-to-core rotation in a main sequence A star, KIC 11145123
- Testing the recovery of stellar rotation signals from Kepler light curves using a blind hare-and-hounds exercise
- Surface rotation of Kepler red giant stars
- The interior angular momentum of core hydrogen burning stars from gravity-mode oscillations
- Rapid Rotation of Low-Mass Red Giants Using APOKASC: A Measure of Interaction Rates on the Post-main-sequence
- On the use of the Fourier Transform to determine the projected rotational velocity of line-profile variable B stars
- M Dwarf rotation from the young clusters to the field. I. A Mass-Rotation Correlation at 10 Myr
- A Diagnostic for Localizing Red Giant Differential Rotation
- Rotational and Radial Velocities of 1.3-2.2 M_Sun Red Giants in Open Clusters
- Lithium Inventory of 2 Red Clump Stars in Open Clusters: A Test of the Helium Flash Mechanism
Cited by in corpus (20)
- Angular Momentum Transport in Stellar Interiors
- Towards precise stellar ages: combining isochrone fitting with empirical gyrochronology
- A Hot Saturn Orbiting An Oscillating Late Subgiant Discovered by TESS
- Constraining stellar evolution theory with asteroseismology of Doradus stars using deep learning
- Chemical Evolution in the Milky Way: Rotation-based ages for APOGEE-Kepler cool dwarf stars
- Active red giants: close binaries versus single rapid rotators
- Rotation Distributions around the Kraft Break with TESS and Kepler: The Influences of Age, Metallicity, and Binarity
- Asteroseismology of evolved stars to constrain the internal transport of angular momentum. III. Using the rotation rates of intermediate-mass stars to test the Fuller-formalism
- Constraining transport of angular momentum in stars: Combining asteroseismic observations of core helium burning stars and white dwarfs
- Core-Envelope Coupling in Intermediate-Mass Core-Helium Burning Stars
- The s process in rotating low-mass AGB stars. Nucleosynthesis calculations in models matching asteroseismic constraints
- Asteroseismology of evolved stars to constrain the internal transport of angular momentum. V. Efficiency of the transport on the red giant branch and in the red clump
- Spinning up the Surface: Evidence for Planetary Engulfment or Unexpected Angular Momentum Transport?
- The Rapid Rotation of the Strongly Magnetic Ultramassive White Dwarf EGGR 156
- BESTP -- An Automated Bayesian Modeling Tool for Asteroseismology
- KIC 7955301: a hierarchical triple system with eclipse timing variations and an oscillating red giant
- Lithium in Kepler Red Giants: Defining Normal and Anomalous
- Red giants evolutionary status determination: the complete Kepler catalog
- Rotationally Driven Ultraviolet Emission of Red Giant Stars II. Metallicity, Activity, Binarity and Sub-subgiants
- 200,000+ Deep Learning-inferred Periods of Stellar Variability from the All-Sky Automated Survey for Supernovae