Radial and Angular Resolved Langmuir Probe Diagnosis of a Pulsed Vacuum Arc Plasma
Vacuum arc ion sources are known for delivering high currents of ion beams in many technological applications. There is a great need in the present ion accelerator injection research for a titanium vacuum arc source to produce high-ionized plasma, in which its parameter is extremely important to mat...
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Published in | Plasma science & technology Vol. 13; no. 6; pp. 689 - 692 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
IOP Publishing
01.12.2011
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Subjects | |
Online Access | Get full text |
ISSN | 1009-0630 |
DOI | 10.1088/1009-0630/13/6/10 |
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Abstract | Vacuum arc ion sources are known for delivering high currents of ion beams in many technological applications. There is a great need in the present ion accelerator injection research for a titanium vacuum arc source to produce high-ionized plasma, in which its parameter is extremely important to match the extractors geometry and the extraction voltage. In this paper, the radial and angular distributions of the titanium cathodic vacuum arc plasma parameters are measured by a cylindrical Langmuir probe and analyzed by the Druyvesteyn method from the I-V curves. The electron density ne is about 10^(17)m^(-3) and the effective electron temperature Tefr is in the range of 6.12-11.11 eV in the free expansion cup before the ion extraction. The measured distribution of ne over the expansion cross-section is non-uniform and axially unsymmetrical with its form similar to the Gaussian distribution, and most of the plasma is concentrated into an area whose radius is smaller than 5 mm. Teff has a nearly uniform distribution over the expansion cross-section during the discharge. The results of the plasma parameters' non-uniformity encourage the researchers to make some optimization designs to improve the parameter distributions, and then to facilitate ion extraction. |
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AbstractList | Vacuum arc ion sources are known for delivering high currents of ion beams in many technological applications. There is a great need in the present ion accelerator injection research for a titanium vacuum arc source to produce high-ionized plasma, in which its parameter is extremely important to match the extractors geometry and the extraction voltage. In this paper, the radial and angular distributions of the titanium cathodic vacuum arc plasma parameters are measured by a cylindrical Langmuir probe and analyzed by the Druyvesteyn method from the I-V curves. The electron density ne is about 10^(17)m^(-3) and the effective electron temperature Tefr is in the range of 6.12-11.11 eV in the free expansion cup before the ion extraction. The measured distribution of ne over the expansion cross-section is non-uniform and axially unsymmetrical with its form similar to the Gaussian distribution, and most of the plasma is concentrated into an area whose radius is smaller than 5 mm. Teff has a nearly uniform distribution over the expansion cross-section during the discharge. The results of the plasma parameters' non-uniformity encourage the researchers to make some optimization designs to improve the parameter distributions, and then to facilitate ion extraction. |
Author | 陈磊 马明旺 黎明 金大志 谈效华 戴晶怡 杨林 胡思得 |
AuthorAffiliation | Institute of Electronic Engineering, China Academy of Engineering Physics,Mianyang 621900, China Department of Engineering Physics, Tsinghua University, Beijing 100084, China Institute of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China |
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Cites_doi | 10.1088/0963-0252/15/3/032 10.1063/1.1143902 10.1109/TPS.2005.860088 10.1063/1.1427040 10.1063/1.1148573 10.1088/0741-3335/47/5A/010 10.1109/TPS.2005.856488 10.1016/j.vacuum.2010.09.005 10.1088/0022-3727/34/17/202 10.1063/1.1427039 10.1063/1.352924 10.1103/PhysRevE.55.969 10.1109/27.893320 |
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DocumentTitleAlternate | Radial and Angular Resolved Langmuir Probe Diagnosis of a Pulsed Vacuum Arc Plasma |
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Notes | CHEN Lei, MA Mingwang , LIMing, JIN Dazhi , TAN Xiaohua , DAI Jingyi, YANG Lin , HU Side ( l.Institute of Electronic Engineering, China Academy of Engineering Physics, Mianyang 621900, China; 2.Department of Engineering Physics, Tsinghua University, Beijing 100084, China; 3.Institute of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China) langmuir probe; vacuum arc plasma; ion extraction; diagnosis Vacuum arc ion sources are known for delivering high currents of ion beams in many technological applications. There is a great need in the present ion accelerator injection research for a titanium vacuum arc source to produce high-ionized plasma, in which its parameter is extremely important to match the extractors geometry and the extraction voltage. In this paper, the radial and angular distributions of the titanium cathodic vacuum arc plasma parameters are measured by a cylindrical Langmuir probe and analyzed by the Druyvesteyn method from the I-V curves. The electron density ne is about 10^(17)m^(-3) and the effective electron temperature Tefr is in the range of 6.12-11.11 eV in the free expansion cup before the ion extraction. The measured distribution of ne over the expansion cross-section is non-uniform and axially unsymmetrical with its form similar to the Gaussian distribution, and most of the plasma is concentrated into an area whose radius is smaller than 5 mm. Teff has a nearly uniform distribution over the expansion cross-section during the discharge. The results of the plasma parameters' non-uniformity encourage the researchers to make some optimization designs to improve the parameter distributions, and then to facilitate ion extraction. 34-1187/TL |
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References | 11 12 13 14 Andruczyk D (9) 2006; 15 Jüttner B (5) 2001; 34 2 Boxman R L (1) 1995 4 6 7 8 Mesyats G A (3) 2005; 47 10 |
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Snippet | Vacuum arc ion sources are known for delivering high currents of ion beams in many technological applications. There is a great need in the present ion... |
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SubjectTerms | 径向 探针诊断 电弧等离子体 真空弧离子源 真空电弧 等离子体参数 脉冲 角分辨 |
Title | Radial and Angular Resolved Langmuir Probe Diagnosis of a Pulsed Vacuum Arc Plasma |
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