A helium-flash-induced mixing event can explain the lithium abundances of red clump stars
arXiv:2009.01248 · doi:10.3847/2041-8213/abb45f
Abstract
Observations demonstrate that the surface abundance of in low-mass stars changes dramatically between the tip of the red giant branch and the red clump. This naturally suggests an association with the helium core flash, which occurs between these two stages. Using stellar evolution models and a simple, ad hoc mixing prescription, we demonstrate that the enhancement can be explained by a brief chemical mixing event that occurs at the time of the first, strongest He sub-flash. The amount of already present above the H-burning shell just before the flash, once it mixes into the cooler envelope and undergoes an electron capture converting it to , is sufficient to explain the observed abundance at the red clump. We suggest that the excitation of internal gravity waves by the vigorous turbulent convection during the flash may provide a physical mechanism that can induce such mixing.
6 pages, 5 figures; Accepted to ApJL
References in corpus (10)
- The NumPy array: a structure for efficient numerical computation
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- Discovery of ubiquitous lithium production in low-mass stars
- Lithium depletion in solar-like stars: effect of overshooting based on realistic multi-dimensional simulations
- Low-frequency variability in massive stars: Core generation or surface phenomenon?
- Photospheric diagnostics of core helium burning in giant stars
- The effects of a revised Be e-capture rate on solar neutrino fluxes
- Asteroseismic signatures of the helium-core flash
Cited by in corpus (33)
- Modules for Experiments in Stellar Astrophysics (MESA): Time-Dependent Convection, Energy Conservation, Automatic Differentiation, and Infrastructure
- Overview of the LAMOST survey in the first decade
- Nucleosynthesis of binary-stripped stars
- Enhancement of Lithium in Red Clump Stars by the Additional Energy Loss Induced by New Physics
- Tracking the evolution of lithium in giants using asteroseismology: Super-Li-rich stars are almost exclusively young red-clump stars
- The Open Cluster Chemical Abundances and Mapping Survey: VII. APOGEE DR17 [C/N]-Age Calibration
- The Gaia-ESO survey: Lithium abundances in open cluster Red Clump stars
- Search for lithium-rich giants in 32 open clusters with high-resolution spectroscopy
- 3D hydrodynamics simulations of internal gravity waves in red giant branch stars
- New Post-AGB star models as tools to understand AGB evolution and nucleosynthesis
- Many Roads Lead to Lithium: Formation Pathways For Lithium-Rich Red Giants
- Mass Matters: No Evidence for Ubiquitous Lithium Production in Low-Mass Clump Giants
- Lithium Evolution of Giant Stars Observed by LAMOST and Kepler
- Lithium abundances in giants as a function of stellar mass: An evidence for He-flash as the source of Li enhancement in low mass giants
- Evidence of extra-mixing in field giants as traced by lithium and carbon isotope ratio
- Li-rich Giants in LAMOST Survey. III. The statistical analysis of Li-rich giants
- A study of carbon-rich post-AGB stars in the Milky Way to understand the production of carbonaceous dust from evolved stars
- Lithium in red giants: the roles of the He-core flash and the luminosity bump
- Li-rich and super Li-rich giants produced by element diffusion
- Probing infrared excess connection with Li enhancement among red clump giants
- Are Lithium-Rich Giants Binaries? A Radial Velocity Variability Analysis of 1,400 Giants
- Lithium in Kepler Red Giants: Defining Normal and Anomalous
- Distribution and evolution of Li abundance in red clump stars can be explained by the internal gravity waves
- Convective Mixing: The Formation Channel of Li-rich Giants
- s-process Enriched Evolved Binaries in the Galaxy and the Magellanic Clouds
- Rapid expansion of red giant stars during core helium flash by waves propagation to the envelope and implications to exoplanets
- Wave-Driven Mixing Enhanced by Rotation in Red Giant Branch Stars
- The Impact of Neutrino Magnetic Moments on the Evolution of the Helium Flash and Lithium-Rich Red Clump Stars
- Unevolved Li-rich stars at low metallicity: a possible formation pathway through novae
- Onset of common envelope evolution during a core helium flash by rapid envelope expansion
- Toward a Comprehensive Grid of Cepheid Models with MESA II. Impact of Physical and Numerical Assumptions on Elemental Abundances
- A Near-Infrared and Optical Study of NGC 5822: An Open Cluster Hosting Barium-stars and Lithium-Enriched Giant Stars
- The mixing of internal gravity waves and lithium production in intermediate-mass AGB stars