Evaluating ion dynamics through Coulomb and Yukawa interaction potentials in one component strongly coupled plasmas

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Mishra, Swati Swagatika, Brault, Pascal, Bhattacharjee, Sudeep
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929554808897536
author Mishra, Swati Swagatika
Brault, Pascal
Bhattacharjee, Sudeep
author_facet Mishra, Swati Swagatika
Brault, Pascal
Bhattacharjee, Sudeep
contents Atmospheric pressure helium plasmas are investigated through molecular dynamics simulations at room temperature (300 K) for various ionization fractions ($χ_i = 10^{-1} - 10^{-5}$) in the strongly coupled regime (ion coupling parameter, $Γ_i \sim 1 - 10$) employing Coulomb and Yukawa interaction potentials. The role of electron screening in ion dynamics and energetics is examined through ion and gas temperatures, mean squared displacement of ions, ion coupling parameter, and radial distribution function of the system. It is found that electron screening in the Yukawa potential significantly limits the disorder-induced heating (DIH) mechanism for strongly ionized plasmas ($χ_i$ $\ge 10^{-3}$). Whereas, ions show a prominent sub-diffusive behavior associated with the DIH during the non-equilibrium phase for the Coulomb potential. The DIH mechanism is explained using a model based upon the conservation of energy. However, for weakly ionized plasmas ($χ_i \le 10^{-4}$), the maximum ion temperatures are almost similar for both potentials. Furthermore, electron screening affects the separation distance and arrangement of the ion-neutral pairs for all the values of $χ_i$. In general, Yukawa potential results in a lower mean potential energy of the interacting particles, which is energetically favourable for the stability of the system.
format Preprint
id arxiv_https___arxiv_org_abs_2408_12156
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Evaluating ion dynamics through Coulomb and Yukawa interaction potentials in one component strongly coupled plasmas
Mishra, Swati Swagatika
Brault, Pascal
Bhattacharjee, Sudeep
Plasma Physics
Atmospheric pressure helium plasmas are investigated through molecular dynamics simulations at room temperature (300 K) for various ionization fractions ($χ_i = 10^{-1} - 10^{-5}$) in the strongly coupled regime (ion coupling parameter, $Γ_i \sim 1 - 10$) employing Coulomb and Yukawa interaction potentials. The role of electron screening in ion dynamics and energetics is examined through ion and gas temperatures, mean squared displacement of ions, ion coupling parameter, and radial distribution function of the system. It is found that electron screening in the Yukawa potential significantly limits the disorder-induced heating (DIH) mechanism for strongly ionized plasmas ($χ_i$ $\ge 10^{-3}$). Whereas, ions show a prominent sub-diffusive behavior associated with the DIH during the non-equilibrium phase for the Coulomb potential. The DIH mechanism is explained using a model based upon the conservation of energy. However, for weakly ionized plasmas ($χ_i \le 10^{-4}$), the maximum ion temperatures are almost similar for both potentials. Furthermore, electron screening affects the separation distance and arrangement of the ion-neutral pairs for all the values of $χ_i$. In general, Yukawa potential results in a lower mean potential energy of the interacting particles, which is energetically favourable for the stability of the system.
title Evaluating ion dynamics through Coulomb and Yukawa interaction potentials in one component strongly coupled plasmas
topic Plasma Physics
url https://arxiv.org/abs/2408.12156