论文标题
多离子等离子体混合物的静态和动态特性
Static and dynamic properties of multi-ionic plasma mixtures
论文作者
论文摘要
在天体物理学或惯性约束融合(ICF)实验中,经常遇到与三个或三个组件的复杂血浆混合物。对于含有原子数Z差异很大的物种的混合物,建模需要同时考虑低Z元素的动力学理论,结合了高Z元素的强耦合等离子体的理论,以及所有可以出现在多组分系统中的中间情况。在这种情况下,我们研究了对极端条件下三元混合物的配对分布功能,自扩散,相互扩散和粘度。这些数量可以使用无轨道的分子动力学从第一原理产生,并以非常密集的模拟的计算费用来达到良好的统计数据。利用第一原理结果作为参考数据,我们根据ISO-Electronic假设(ISO-N E)评估了用于传输系数,伪离子(PIJ)的全局分析模型的优点。使用多组分的超链链积分方程,我们验证了ISO-N E处方的质量,用于描述混合物的静态结构。该半分析建模与模拟结果很好地比较,并允许人们考虑模拟无法访问的等离子体混合物。在ICF实验中给出了材料混合的应用。还将多组分混合物减少到有效的二元混合物中,并在流体动力学极限中与PIJ相关混合物的PIJ估计进行了比较。
Complex plasma mixtures with three or more components are often encountered in astrophysics or in inertial confinement fusion (ICF) experiments. For mixtures containing species with large differences in atomic number Z, the modeling needs to consider at the same time the kinetic theory for low-Z elements combined with the theory of strongly coupled plasma for high-Z elements, as well as all the intermediate situations that can appear in multi-component systems. For such cases, we study the pair distribution functions, self-diffusions, mutual diffusion and viscosity for ternary mixtures at extreme conditions. These quantities can be produced from first principles using orbital free molecular dynamics at the computational expense of very intensive simulations to reach good statistics. Utilizing the first-principles results as reference data, we assess the merit of a global analytic model for transport coefficients, Pseudo-Ions in Jellium (PIJ), based on an iso-electronic assumption ( iso-n e ). With a multi-component hypernetted-chain integral equation, we verify the quality of the iso-n e prescription for describing the static structure of the mixtures. This semi-analytical modeling compares well with the simulation results and allows one to consider plasma mixtures not accessible to simulations. Applications are given for the mix of materials in ICF experiments. A reduction of a multicomponent mixture to an effective binary mixture is also established in the hydrodynamic limit and compared with PIJ estimations for ICF relevant mixtures.