Obtaining the unperturbed plasma potential in low-density, low-temperature plasmas

被引:3
|
作者
Causa, Federica [1 ]
Gervasini, Gabriele [1 ]
Uccello, Andrea [1 ]
Granucci, Gustavo [1 ]
Ricci, Daria [1 ]
Rispoli, Natale [1 ]
机构
[1] CNR Consiglio Nazl Ric, Ist Sci & Tecnol Plasmi, Milan, Italy
来源
PLASMA SOURCES SCIENCE & TECHNOLOGY | 2021年 / 30卷 / 04期
关键词
Langmuir probe; plasma characterisation; low-density low-temperature plasma; sheath expansion;
D O I
10.1088/1361-6595/abef1b
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
A method is proposed to effectively obtain plasma parameters in low-density, low-temperature plasmas that are easily perturbed by Langmuir probes. The methodology is based on the perimeter sheath expansion method because it provides a simple, but effective interpretation of the Langmuir probe characteristics and, in particular, of the non-saturating trend of the ion saturation due to the expansion of the probe sheath. However, the perimeter sheath expansion method is proposed here in a modified version with a dual purpose: to permit the verification of the Child-Langmuir dependence of the sheath thickness from the potential and, most importantly, to properly assess the plasma potential. When probe perturbation is significant the proposed method provides an effective correction term for the plasma potential. The resulting sheath voltage is consistent in all analysed cases and in close agreement with the expected value for cylindrical probes in Ar. The method is applied to Ar plasmas here, but because no specific assumption was made on the atomic species, it may be applicable to other situations of interest.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Obtaining the unperturbed plasma potential in low-density, low-temperature plasmas
    Causa, Federica
    Gervasini, Gabriele
    Uccello, Andrea
    Granucci, Gustavo
    Ricci, Daria
    Rispoli, Natale
    Plasma Sources Science and Technology, 2021, 30 (04)
  • [2] Investigation of low-temperature plasmas formed in low-density gases surrounding laser-produced plasmas
    Majszyk, Mateusz
    Bartnik, Andrzej
    Skrzeczanowski, Wojciech
    Fok, Tomasz
    Wegrzynski, Lukasz
    Szczurek, Miroslaw
    Fiedorowicz, Henryk
    NUKLEONIKA, 2023, 68 (01) : 11 - 17
  • [3] THE COULOMB GAS AT LOW-TEMPERATURE AND LOW-DENSITY
    CONLON, JG
    LIEB, EH
    YAU, HT
    COMMUNICATIONS IN MATHEMATICAL PHYSICS, 1989, 125 (01) : 153 - 180
  • [4] Plasma parameters profiles from Langmuir probe measurements in low-density, low-temperature plasmas in an axial magnetic field
    Causa, F.
    Gittini, G.
    Minelli, D.
    Mellera, V
    Uccello, A.
    Nardone, A.
    Ripamonti, F.
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2022, 31 (07):
  • [5] MEASUREMENTS OF THE SHEATH POTENTIAL IN LOW-DENSITY PLASMAS
    BRADLEY, JW
    KHAMIS, RA
    SANDUK, MI
    ELLIOTT, JA
    RUSBRIDGE, MG
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1992, 25 (10) : 1443 - 1453
  • [6] LOW-TEMPERATURE OXIDATION OF UNSTABILIZED LOW-DENSITY POLYETHYLENE
    PIIROJA, EK
    LIPPMAA, HV
    ACTA POLYMERICA, 1985, 36 (04) : 196 - 199
  • [7] Empirical line ratios for optical emission spectroscopy in low-temperature, low-density, magnetised Ar plasmas
    Cremona, Anna
    Causa, Federica
    Uccello, Andrea
    Ricci, Daria
    Giunta, Alessandra
    O'Mullane, Martin
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2024, 57 (36)
  • [8] HYDROPEROXIDATION IN THE LOW-TEMPERATURE THERMOOXIDATION OF LINEAR LOW-DENSITY POLYETHYLENE
    FANTON, E
    TIDJANI, A
    ARNAUD, R
    POLYMER, 1994, 35 (02) : 433 - 434
  • [9] ION-CYCLOTRON ELECTROSTATIC-WAVES IN A LOW-TEMPERATURE LOW-DENSITY MAGNETIZED PLASMA
    PETRILLO, V
    MAROLI, C
    FASOLI, A
    GALASSI, A
    LONGARI, C
    NUOVO CIMENTO DELLA SOCIETA ITALIANA DI FISICA D-CONDENSED MATTER ATOMIC MOLECULAR AND CHEMICAL PHYSICS FLUIDS PLASMAS BIOPHYSICS, 1989, 11 (09): : 1337 - 1348
  • [10] Model for the density, temperature, and plasma potential of low-density hot-filament discharges
    Robertson, S
    Sternovsky, Z
    PHYSICAL REVIEW E, 2005, 72 (01):