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Modeling partially ionized dense plasma using wavepacket molecular dynamics
DOI:10.1103/x4j6-9d29.png)
Abstract
En 中文
We develop a wavepacket molecular dynamics framework for modeling the structural properties of partially ionized dense plasmas, based on a chemical model that explicitly includes bound state wave functions. Using hydrogen as a representative system, we compute self-consistent charge state distributions through free-energy minimization, following the approach of Plummer et al. [Phys. Rev. E 111, 015204 (2025)]. This enables a direct comparison of static equilibrium properties with path-integral Monte Carlo data, facilitating an evaluation of the model's underlying approximations and its ability to capture the complex interplay between ionization and structure in dense plasma environments.
Keywords:
SIMULATIONS
HYDROGEN
Journal
IF:
2.4
Papers:
1.3K
Citations:
10.2W

