• Title/Summary/Keyword: Cathode dark space

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Changes in the Optogalvanic Signal Amplitude in a Hollow Cathode Discharge

  • Lee, Jun-Hoi;Koo, Kyung-Wan;Lee, Ki-Sik
    • Transactions on Electrical and Electronic Materials
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    • v.10 no.6
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    • pp.212-216
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    • 2009
  • The spatial distribution of the optogalvanic (OG) signal in argon at the 801.489 nm ($1s_5-2p_8$ transition at the metastable level in Paschen notation) was investigated in the radial direction of a hollow cathode discharge tube. The results of this experiment showed that the OG signal amplitude decreases in accordance with the following two conditions; first, the level of discharge current and second, the distance from the cathode dark space. These results can be quantified by analyzing the electron density profile along the discharge regions, which can directly influence the collisional ionization induced by electron impact.

A Study on the Characteristics of High Pressure DC Glow Discharge with a Narrow Gap (좁은 간격의 고압 DC 글로우 방전에서의 방전물성에 관한 연구)

  • Park, Jae-Seong;Jeong, Heui-Seob;Shin, Buhm-Jae;Whang, Ki-Woong
    • Proceedings of the KIEE Conference
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    • 1995.11a
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    • pp.435-437
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    • 1995
  • It is important to understand tile behaviours of tile high pressure DC glow discharge with a micro gap inside a pixel of the plasmas display panel. We prepared a narrow gap discharge system and have measured electron temperature and density by means of double probe methods in high pressure which was between 100torr and 200torr. And the electrode gap was 7mm. When the pressure varied from 100torr to 200torr, the negative glow was created at a distance less than 1mm from the cathode. And the length of the faraday dark space decreased from 8mm to 5mm. Hence probe measurements was mainly, performed in the region of the Faraday dark space. The dependence of electron temperature and density on the pressure and current density was same with that of the general flow discharge, i.e. as the pressure increased the electron temperature decreased and the density increased. But the spatial electron density distribution in the Faraday dark space was highly distorted because of the effect of high pressure.

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