论文标题
库仑筛选校正对热等离子体中三重α过程的$ q $值
Coulomb screening correction to the $Q$ value of the triple alpha process in thermal plasmas
论文作者
论文摘要
三重α反应是$^{12} $ c产生的关键,预计将发生在正常恒星中遇到的弱耦合的热等离子体中。我们研究了在这种等离子体环境中通过Debye-Hückel近似中精确的三体计算,在这种等离子体环境中如何影响库仑筛查如何影响三个α颗粒系统的结构。采用了一种以Yukawa形式修改的库仑相互作用的三α模型。精确的三体波函数是通过随机变化方法的相关高斯碱基的叠加来获得的。由于Debye筛选长度的函数,获得了由于库仑筛查而引起的Hoyle状态的能量移位。该结果自动纳入了霍伊尔状态的有限尺寸效应,与基于对离子的化学势的库仑校正基于常规结果一致,而离子的化学势被认为是弱耦合的热等离子体中的点电荷。我们已经为常规点筛选方法提供了与正常恒星中核反应相关的库仑筛查问题的理论基础,该方法通过对库仑校正进行了对产生有限尺寸hoyle状态的三重alpha过程的$ q $值的首次评估。
The triple alpha reaction is a key to $^{12}$C production and is expected to occur in weakly-coupled, thermal plasmas as encountered in normal stars. We investigate how Coulomb screening affects the structure of a system of three alpha particles in such a plasma environment by precise three-body calculations within the Debye-Hückel approximation. A three-alpha model that has the Coulomb interaction modified in the Yukawa form is employed. Precise three-body wave functions are obtained by a superposition of correlated Gaussian bases with the aid of the stochastic variational method. The energy shifts of the Hoyle state due to the Coulomb screening are obtained as a function of the Debye screening length. The results, which automatically incorporate the finite size effect of the Hoyle state, are consistent with the conventional result based on the Coulomb correction to the chemical potentials of ions that are regarded as point charges in a weakly-coupled, thermal plasma. We have given a theoretical basis to the conventional point-charge approach to the Coulomb screening problem relevant for nuclear reactions in normal stars by providing the first evaluation of the Coulomb corrections to the $Q$ value of the triple alpha process that produces a finite size Hoyle state.