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不同结构六边形斑图演化过程光谱特性
引用本文:冯建宇,董丽芳,魏领燕,郝芳,杜天,崔义乾.不同结构六边形斑图演化过程光谱特性[J].发光学报,2016,37(9):1076-1081.
作者姓名:冯建宇  董丽芳  魏领燕  郝芳  杜天  崔义乾
作者单位:河北大学 物理科学与技术学院, 河北 保定 071002
基金项目:国家自然科学基金(11375051,11505044);河北省教育厅项目(LJRC011)
摘    要:采用发射光谱法,研究了水电极介质阻挡放电中具有相同对称性的3种不同结构的六边形斑图演化过程的光谱特性。实验结果表明,随着外加电压的增加,放电首先形成六边形点阵斑图,然后是空心六边形斑图,最后是蜂窝六边形斑图。利用氩原子696.5 nm(2P_2→1S_5)谱线的展宽、氩原子763.2 nm(2P_6→1S_5)与772.1 nm(2P_2→1S_3)两条谱线强度比法和氮分子第二正带系(C~3Π_u→B~3Π_g)的发射谱线,研究上述3种斑图的电子密度、电子激发温度及分子振动温度。结果发现,随着外加电压的升高,六边形点阵斑图、空心六边形斑图和蜂窝六边形斑图的电子密度逐渐减小,而电子激发温度和分子振动温度逐渐增加。等离子体状态的改变直接影响着斑图的自组织。

关 键 词:介质阻挡放电  斑图  发射光谱  电子密度  电子激发温度  分子振动温度
收稿时间:2016-04-16

Spectral Characteristics of Different Kinds of Hexagon Pattern in Evolutionary Process
FENG Jian-yu,DONG Li-fang,WEI Ling-yan,HAO Fang,DU Tian,CUI Yi-qian.Spectral Characteristics of Different Kinds of Hexagon Pattern in Evolutionary Process[J].Chinese Journal of Luminescence,2016,37(9):1076-1081.
Authors:FENG Jian-yu  DONG Li-fang  WEI Ling-yan  HAO Fang  DU Tian  CUI Yi-qian
Institution:College of Physics Science and Technology, Hebei University, Baoding 071002, China
Abstract:The spectral characteristics of different kinds of hexagon pattern with the same symmetry in evolutionary process were studied in dielectric barrier discharge by optical emission spectrum. It is found that the discharge undergoes hexagon superlattice pattern, hollow hexagon pattern and hon-eycomb pattern with the increasing of the applied voltage. The electronic density, electron excitation temperature and molecular vibration temperature of the three kinds of patterns were investigated by the broadening of spectral line 696. 5 nm, the relative intensity ratio method of spectral lines of ArⅠ763. 2 nm (2P6→1S5) and Ar Ⅰ772. 1 nm (2P2→1S3) and the emission spectra of nitrogen band of second positive system ( C3Πu→B3Πg ) , respectively. The results show that the electronic density of the hexagon superlattice pattern, hollow hexagon pattern and honeycomb pattern gradually decreases, while the electron excitation temperature and molecular vibration temperature of the three kinds of patterns gradually increase with the applied voltage increasing. It is found that the change of the plasma state has effect on the self-organization of the pattern.
Keywords:dielectric barrier discharge  pattern  emission spectra  electronic density  electron excitation tempera-ture  molecular vibration temperature
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