Theoretical Estimates of Stellar e-Captures. I. The half-life of 7Be in Evolved Stars
arXiv:1212.5737 · doi:10.1088/0004-637X/764/2/118
Abstract
The Li enrichment in the Universe still presents various puzzles to astrophysics. One open issue is that of obtaining estimates for the rate of e-captures on 7Be, for T and rho conditions different from solar. This is important to model the Galactic nucleosynthesis of Li. In this framework, we present a new theoretical method for calculating the e-capture rate in conditions typical of evolved stars. We show how our approach compares with state-of-the-art techniques for solar conditions, where various estimates are available. Our computations include: i) "traditional" calculations of the electronic density at the nucleus, to which the e-capture rate for 7Be is proportional, for different theoretical approaches including the Thomas--Fermi, Poisson--Boltzmann and Debye--Hueckel (DH) models of screening, ii) a new computation, based on a formalism that goes beyond the previous ones, adopting a mean-field "adiabatic" approximation to the scattering process. The results obtained with our approach as well as with the traditional ones and their differences are discussed in some detail, starting from solar conditions, where our method and the DH model converge to the same solution. We then analyze the applicability of the various models to a rather broad range of T and rho values, embracing those typical of red giant stars. We find that, over a wide region of the parameter space explored, the DH approximation does not stand, and the more general method we suggest is preferable. We then briefly reanalyze the 7Li abundances in RGB and AGB stars of the Galactic Disk using the new Be-decay rate. We also underline that the different values of the electron density at the nucleus we find should induce effects on electron screening (for p-captures on Li itself, as well as for other nuclei) so that our new approach might have wide astrophysical consequences.
Astrophts. Journal Feb. 1, 2013
References in corpus (8)
- Can Extra Mixing in RGB and AGB Stars Be Attributed to Magnetic Mechanisms?
- Magnetic Mixing in Red Giant and Asymptotic Giant Branch Stars
- News on the s process from young open clusters
- Chemical abundances of distant extremely metal-poor unevolved stars
- Carbon and oxygen isotopic ratios in Arcturus and Aldebaran: Constraining the parameters for non convective mixing on the RGB
- Lithium abundances along the RGB: FLAMES-GIRAFFE spectra of a large sample of low-mass Bulge stars
- Mixed ab initio quantum mechanical and Monte Carlo calculations of secondary emission from SiO2 nanoclusters
- The effect of heavy element opacity on pre-main sequence Li depletion
Cited by in corpus (17)
- Modules for Experiments in Stellar Astrophysics (MESA): Time-Dependent Convection, Energy Conservation, Automatic Differentiation, and Infrastructure
- Precision big bang nucleosynthesis with improved Helium-4 predictions
- MHD and deep mixing in evolved stars. 1. 2D and 3D analytical models for the AGB
- Electron capture in stars
- A helium-flash-induced mixing event can explain the lithium abundances of red clump stars
- Light Elements in the Universe
- Nucleosynthesis of binary-stripped stars
- Theoretical estimate of the half-life for the radioactive Cs and Cs in astrophysical scenarios
- Solar fusion III: New data and theory for hydrogen-burning stars
- Isotope Anomalies in the Fe-group Elements in Meteorites and Connection to Nucleosynthesis in AGB Stars
- The effects of a revised Be e-capture rate on solar neutrino fluxes
- An Expanded Set of Los Alamos OPLIB Tables in MESA: Type-1 Rosseland-mean Opacities and Solar Models
- Screening of fusion reactions from the principle of detailed balance and application to the reaction
- Li-rich and super Li-rich giants produced by element diffusion
- Primordial Nucleosynthesis
- The mixing of internal gravity waves and lithium production in intermediate-mass AGB stars
- Electroweak Decay Studies of Highly Charged Radioactive Ions with TITAN at TRIUMF