Chin. Phys. Lett.  2008, Vol. 25 Issue (6): 2136-2139    DOI:
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Determination of Ionization Coefficient of Atmospheric Helium in Dielectric Barrier Discharge
LIANG Zhuo;LUO Hai-Yun;Wang Xin-Xin;LV Bo;GUAN Zhi-Cheng;WANG
Li-Ming
Department of Electrical Engineering, Tsinghua University, Beijing 100084
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LIANG Zhuo, LUO Hai-Yun, Wang Xin-Xin et al  2008 Chin. Phys. Lett. 25 2136-2139
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Abstract A weakly luminous layer close to the anode is observed at time far ahead of the current pulse in dielectric barrier discharge of helium at atmospheric pressure and it is considered as the result of a very weak Townsend discharge. Based on the assumption that the space charge produced by this
Townsend discharge is too small to distort the uniform electric field in the gas gap, the electrons have more or less the same energy over the entire gap and the spatial distribution of the discharge light is proportional to the distribution of electron density. This light distribution is obtained by processing side-view photograph of discharge gap using an intensified charge coupled device camera with an exposure time of 20ns. By fitting a theoretically derived formula with the measured curve of light distribution, the Townsend electron ionization coefficient α is determined to be 31cm-1 at
E/p=3.6V・cm-1・Torr-1, which is much higher than that obtained by solving the Boltzmann equation of pure helium. It is believed that penning ionization of helium metastables with impurity of nitrogen molecules makes great contribution to the experimentally determined α value. The contribution of this
penning ionization to α is roughly estimated.
Keywords: 51.50.+v      52.80.Dy      52.80.Mg      52.70.Kz     
Received: 18 March 2008      Published: 31 May 2008
PACS:  51.50.+v (Electrical properties)  
  52.80.Dy (Low-field and Townsend discharges)  
  52.80.Mg (Arcs; sparks; lightning; atmospheric electricity)  
  52.70.Kz (Optical (ultraviolet, visible, infrared) measurements)  
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https://cpl.iphy.ac.cn/       OR      https://cpl.iphy.ac.cn/Y2008/V25/I6/02136
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LIANG Zhuo
LUO Hai-Yun
Wang Xin-Xin
LV Bo
GUAN Zhi-Cheng
WANGLi-Ming
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