Plasma sheath physics: A circuital description, amelioration, and application

Fuente: arXiv
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Autores principales: Karmakar, Pralay Kumar, Dutta, Subham, Deka, Utpal
Formato: Preprint
Publicado: 2025
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author Karmakar, Pralay Kumar
Dutta, Subham
Deka, Utpal
author_facet Karmakar, Pralay Kumar
Dutta, Subham
Deka, Utpal
contents A synoptic review of the electrical circuital model-based analysis of laboratory plasma sheaths, alongside their stability features in a realistic broader horizon, is systematically presented herein. It explains the basic physics responsible for the inductive (L_sh), capacitive (C_sh), and resistive (R_sh) properties simultaneously, exhibited by plasma sheaths. The analyzed model sheath behaviors are judiciously described in the light of the state-of-the-art sheath scenarios, illustratively. The sheath-based circuital components are minutely contrasted with the traditionally available circuital counterparts. The applications of the novel circuital sheath model in widespread fields of research having both fundamental and applied importance are discussed. The main merits of modelling plasma sheaths through the circuital formalism over the existing non-circuital theoretical ones are briefly outlined, jointly with future applied scope.
format Preprint
id arxiv_https___arxiv_org_abs_2506_03935
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Plasma sheath physics: A circuital description, amelioration, and application
Karmakar, Pralay Kumar
Dutta, Subham
Deka, Utpal
Plasma Physics
A synoptic review of the electrical circuital model-based analysis of laboratory plasma sheaths, alongside their stability features in a realistic broader horizon, is systematically presented herein. It explains the basic physics responsible for the inductive (L_sh), capacitive (C_sh), and resistive (R_sh) properties simultaneously, exhibited by plasma sheaths. The analyzed model sheath behaviors are judiciously described in the light of the state-of-the-art sheath scenarios, illustratively. The sheath-based circuital components are minutely contrasted with the traditionally available circuital counterparts. The applications of the novel circuital sheath model in widespread fields of research having both fundamental and applied importance are discussed. The main merits of modelling plasma sheaths through the circuital formalism over the existing non-circuital theoretical ones are briefly outlined, jointly with future applied scope.
title Plasma sheath physics: A circuital description, amelioration, and application
topic Plasma Physics
url https://arxiv.org/abs/2506.03935