Production of n-rich nuclei in red giant stars
arXiv:2305.01549 · doi:10.1140/epja/s10050-023-00988-8
Abstract
We outline a partial historical summary of the steps through which the nucleosynthesis phenomena induced by {\it slow} neutron captures (the {\it s-process}) were clarified, a scientific achievement in which Franz Käppeler played a major role. We start by recalling the early phenomenological approach, which yielded a basic understanding of the subject even before models for the parent stellar evolutionary stages were developed. Through such a tool, rough limits for the neutron density and exposure were set, and the crucial fact was understood that more than one nucleosynthesis component is required to account for solar abundances of -process nuclei up to the Pb-Bi region. We then summarize the gradual understanding of the stellar processes actually involved in the production of nuclei from Sr to Pb (the so-called {\it Main Component}, achieved in the last decade of the past century and occurring in red giants of low and intermediate mass, ( 8 ), populating, in the {\it HR} diagram, the {\it Asymptotic Giant Branch} or {\it AGB} region. We conclude by giving some details on more recent research concerning mixing mechanisms inducing the activation of the main neutron source, C(,n)O.
35 page, 8 figures
References in corpus (19)
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- Deep Mixing of He-3: Reconciling Big Bang and Stellar Nucleosynthesis
- Low-frequency gravity waves in blue supergiants revealed by high-precision space photometry
- Can Extra Mixing in RGB and AGB Stars Be Attributed to Magnetic Mechanisms?
- Magnetic Mixing in Red Giant and Asymptotic Giant Branch Stars
- Barium Isotopic Composition of Mainstream Silicon Carbides from Murchison: Constraints for s-Process Nucleosynthesis in AGB Stars
- Correlated Strontium and Barium Isotopic Compositions of Acid-Cleaned Single Silicon Carbides from Murchison
- Magnetic-buoyancy Induced Mixing in AGB Stars: Presolar SiC Grains
- MHD and deep mixing in evolved stars. 1. 2D and 3D analytical models for the AGB
- The 13C-Pocket Structure in AGB Models: Constraints from Zirconium Isotope Abundances in Single Mainstream SiC Grains
- s-Processing in AGB Stars Revisited. III. Neutron captures from MHD mixing at different metallicities and observational constraints
- Presolar grain isotopic ratios as constraints to nuclear and stellar parameters of AGB nucleosynthesis
- Characterisation of Galactic carbon stars and related stars from Gaia-EDR3
- Discovery of six new strongly magnetic white dwarfs in the 20 pc local population
- Magnetic-buoyancy-induced mixing in AGB Stars: fluorine nucleosynthesis at different metallicities
- The carbon star mystery: forty years later
- Rotational mixing in carbon-enhanced metal-poor stars with s-process enrichment
- Stellar masers, circumstellar envelopes, and supernova remnants
- Magnetic Fields around (post-)AGB stars and (Pre-)Planetary Nebulae