Exact Solution of the Collisionless Plasma-Sheath Equation
- 1 December 1963
- journal article
- research article
- Published by AIP Publishing in Physics of Fluids
- Vol. 6 (12) , 1762-1768
- https://doi.org/10.1063/1.1711020
Abstract
The plasma‐sheath problem for the low‐pressure discharge in plane geometry is treated exactly, that is, with no arbitrary division into plasma and sheath regions. Numerical solutions are presented for various values of the parameter α, which is of the order of the ratio of the Debye length to the discharge width for 10−3 ≤ α ≤ 10−1; and for three assumptions regarding the ion generation rate, namely generation uniform, proportional to electron density, and proportional to the square of electron density. For the higher values of α, corresponding to weak laboratory discharges, there is a smooth transition from a quasi‐neutral plasma region to a thick sheath. At the smaller values of α, the conventional model of a quasi‐neutral plasma region passing rather abruptly into a narrow sheath region is substantiated. In all cases, accurate values for the potential profile throughout the plasma and sheath regions are given and compared with the separate asymptotic plasma and sheath solutions for α = 0. The ion current density, wall potential, space‐charge density, mean ion energy, and sheath thickness are discussed.Keywords
This publication has 3 references indexed in Scilit:
- The structure of the collisionless plasma-sheath transitionIl Nuovo Cimento (1869-1876), 1962
- Harrison-Thompson Generalization of Bohm's Sheath ConditionProceedings of the Physical Society, 1962
- A General Theory of the Plasma of an ArcPhysical Review B, 1929