Dynamic screening in solar and stellar nuclear reactions
arXiv:0909.2646 · doi:10.1007/s10509-009-0245-x
Abstract
In the hot, dense plasma of solar and stellar interiors, the Coulomb interaction is screened by the surrounding plasma. Although the standard Salpeter approximation for static screening is widely accepted and used in stellar modeling, the question of dynamic screening has been revisited. In particular, Shaviv and Shaviv apply the techniques of molecular dynamics to the conditions in the solar core in order to numerically determine the dynamic screening effect. By directly calculating the motion of ions and electrons due to Coulomb interactions, they compute the effect of screening without the mean-field assumption inherent in the Salpeter approximation. Here we reproduce their numerical analysis of the screening energy in the plasma of the solar core and conclude that the effects of dynamic screening are relevant and should be included in the treatment of the plasma, especially in the computation of stellar nuclear reaction rates.
Astrophysics and Space Science, Special Issue Solar & Stellar Modelling Corrected sign error. Now consistent with final published version
References in corpus (2)
Cited by in corpus (4)
- Solar fusion III: New data and theory for hydrogen-burning stars
- What have we learned from helioseismology, what have we really learned, and what do we aspire to learn?
- Dynamical Screening Effects on Big Bang Nucleosynthesis
- Open issues in probing interiors of solar-like oscillating main sequence stars 1. From the Sun to nearly suns