The Plasma Channel Evolution Characteristics of Pulsed Flashlamps Working in an Array
This work is devoted to the study of plasma channel evolution characteristics in pulsed xenon flashlamps working in an array. Influencing factors on the plasma channel evolution process are studied, including pre-ionization pulse and neighbor fiashlamps. It has been found that neighbor flaShlamps af...
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Published in | Plasma science & technology Vol. 15; no. 7; pp. 640 - 643 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
01.07.2013
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Online Access | Get full text |
ISSN | 1009-0630 |
DOI | 10.1088/1009-0630/15/7/07 |
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Abstract | This work is devoted to the study of plasma channel evolution characteristics in pulsed xenon flashlamps working in an array. Influencing factors on the plasma channel evolution process are studied, including pre-ionization pulse and neighbor fiashlamps. It has been found that neighbor flaShlamps affect the plasma channel by shaping the electric potential distribution, rather than by Lorentz force. Branching is observed in the plasma channels of the flashlamps in the middle of the array. Inconsistency also exists in the plasma channels of these flashlamps in different tests. The branching and inconsistency are both caused by the unique electric field distribution in these flashlamps. Besides, the pre-ionization pulse can help the main pulse plasma channel to develop more smoothly and faster, which will weaken the shock wave and benefit the mechanical strength of the flashlamp. |
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AbstractList | This work is devoted to the study of plasma channel evolution characteristics in pulsed xenon flashlamps working in an array. Influencing factors on the plasma channel evolution process are studied, including pre-ionization pulse and neighbor flashlamps. It has been found that neighbor flashlamps affect the plasma channel by shaping the electric potential distribution, rather than by Lorentz force. Branching is observed in the plasma channels of the flashlamps in the middle of the array. Inconsistency also exists in the plasma channels of these flashlamps in different tests. The branching and inconsistency are both caused by the unique electric field distribution in these flashlamps. Besides, the pre-ionization pulse can help the main pulse plasma channel to develop more smoothly and faster, which will weaken the shock wave and benefit the mechanical strength of the flashlamp. This work is devoted to the study of plasma channel evolution characteristics in pulsed xenon flashlamps working in an array. Influencing factors on the plasma channel evolution process are studied, including pre-ionization pulse and neighbor fiashlamps. It has been found that neighbor flaShlamps affect the plasma channel by shaping the electric potential distribution, rather than by Lorentz force. Branching is observed in the plasma channels of the flashlamps in the middle of the array. Inconsistency also exists in the plasma channels of these flashlamps in different tests. The branching and inconsistency are both caused by the unique electric field distribution in these flashlamps. Besides, the pre-ionization pulse can help the main pulse plasma channel to develop more smoothly and faster, which will weaken the shock wave and benefit the mechanical strength of the flashlamp. |
Author | 贾申利 李瑞 刘建军 李兴文 宋晓川 李海兵 |
AuthorAffiliation | State Key Laboratory of Electrical Insulation and Power Equipment,Xi'an Jiaotong University, Xi'an 710049, China Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China |
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CitedBy_id | crossref_primary_10_1017_hpl_2015_34 crossref_primary_10_18178_ijeee_4_1_34_38 |
Cites_doi | 10.3788/HPLPB20102210.2483 10.3788/HPLPB20122401.0248 10.1179/174329005X64180 10.1080/10519990214693 10.1117/12.966620 10.1016/j.jqsrt.2003.12.003 10.1063/1.1714211 |
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DocumentTitleAlternate | The Plasma Channel Evolution Characteristics of Pulsed Flashlamps Working in an Array |
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Notes | JIA Shenli , LI Rui , LIU Jianjun , LI Xingwen , SONG Xiaochuan , LI naibing(1State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China; 2Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences Shanghai 201800, China) xenon flashlamps, plasma channel, inertial confined fusion This work is devoted to the study of plasma channel evolution characteristics in pulsed xenon flashlamps working in an array. Influencing factors on the plasma channel evolution process are studied, including pre-ionization pulse and neighbor fiashlamps. It has been found that neighbor flaShlamps affect the plasma channel by shaping the electric potential distribution, rather than by Lorentz force. Branching is observed in the plasma channels of the flashlamps in the middle of the array. Inconsistency also exists in the plasma channels of these flashlamps in different tests. The branching and inconsistency are both caused by the unique electric field distribution in these flashlamps. Besides, the pre-ionization pulse can help the main pulse plasma channel to develop more smoothly and faster, which will weaken the shock wave and benefit the mechanical strength of the flashlamp. 34-1187/TL ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
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References | 1 3 Liu J (4) 2006; 33 5 6 Erlandson A C (2) 1997 7 8 Li X (9) 2012 10 |
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SubjectTerms | Arrays Channels Electric potential Evolution Flashlamps Lorentz force Shock waves Stress concentration Xenon 影响因素 演化特征 演变特征 电势分布 等离子体通道 脉冲氙灯 闪光灯 阵列 |
Title | The Plasma Channel Evolution Characteristics of Pulsed Flashlamps Working in an Array |
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