论文标题
在中间筛选方面
Self-Consistent Relaxation Theory of Collective Ion Dynamics in Yukawa One-Component Plasmas under Intermediate Screening Regimes
论文作者
论文摘要
使用自洽的放松理论来描述强烈耦合的Yukawa经典单组分等离子体中的集体离子动力学。该理论应用于对应于具有适当的结构和耦合参数值的中间筛选方案的平衡状态。有关结构(径向分布函数和静态结构因子)和系统的热力学的信息足以描述从扩展的流体动力学到微观动力学量表的广泛空间范围内的集体动力学。离子平衡集体动力学的主要实验可测量特征 - 动态结构因子的光谱,色散参数,声音速度和声音衰减 - 在理论的框架内确定,而无需使用任何可调节参数。结果表明与分子动力学模拟一致。因此,直接实现了统计力学的关键思想:对于平衡流体的集体粒子动力学的理论描述,足以了解粒子间相互作用潜力和结构特征。提供了与替代或互补理论方法的比较。
The self-consistent relaxation theory is employed to describe the collective ion dynamics in strongly coupled Yukawa classical one-component plasmas. The theory is applied to equilibrium states corresponding to intermediate screening regimes with appropriate values of the structure and coupling parameters. The information about the structure (the radial distribution function and the static structure factor) and the thermodynamics of the system is sufficient to describe collective dynamics over a wide range of spatial ranges, namely, from the extended hydrodynamic to the microscopic dynamics scale. The main experimentally measurable characteristics of the equilibrium collective dynamics of ions -- the spectrum of the dynamic structure factor, the dispersion parameters, the speed of sound and the sound attenuation -- are determined within the framework of the theory without using any adjustable parameters. The results demonstrate agreement with molecular dynamics simulations. Thus a direct realization is presented of the key idea of statistical mechanics: for the theoretical description of the collective particle dynamics of equilibrium fluids it is sufficient to know the interparticle interaction potential and the structural characteristics. Comparison with alternative or complementary theoretical approaches is provided.