Title :
Calculation of current density and temperature distributions at the cathode surface using a collisional sheath model
Author :
Paul, K.C. ; Takemura, T. ; Hiramoto, Toshiro ; Benilov, M. ; Dawson, Francis ; Erraki, A. ; Gonzalez, Jose J. ; Zissis, Georges ; Lavers, D. ; Gleizes, A.
Author_Institution :
R&D Center, Ushio Inc., Shizuoka, Japan
Abstract :
Summary form only given. Thoriated-tungsten is a widely used cathode material in HID (high intensity density) lamps. The degree of thorium coverage, as defined on the tungsten surface may change the current density and temperature distributions at the cathode/plasma interface considerably. This paper presents these distributions that are calculated assuming a collision-dominated sheath. A 1-D model for the micron-order cathode sheath-region of the plasma is developed first to yield heat-flux and current density lookup tables whose entries are a function of cathode surface temperature for a given combined parametric sheath and pre-sheath potential drop. The lookup tables, generated for atmospheric pressure mercury, are used to solve the energy balance and current continuity equations in the cathode body in order to get the current density and temperature distributions at the cathode/plasma interface. Figure 1 shows the current density distributions obtained for a total current of 10 A and for different degrees of surface coverage. Thorium coverage on tungsten changes the work function and Richardson´s constant of the surface and therefore, affects the current density distribution.
Keywords :
cathodes; current density; discharge lamps; plasma collision processes; plasma density; plasma sheaths; plasma temperature; plasma transport processes; thorium; tungsten; work function; Richardson constant; Richardsons constant; Th-W; atmospheric pressure mercury; cathode material; cathode surface; cathode surface temperature; cathode-plasma interface; collision-dominated sheath; collisional sheath model; current continuity equations; current density distributions; heat-flux; high intensity density lamps; micron-order cathode sheath-region; parametric sheath; presheath potential; presheath potential drop; surface coverage; temperature distributions; thoriated tungsten surface; thoriated-tungsten; thorium coverage; tungsten surface; work function; Atmospheric-pressure plasmas; Cathodes; Current density; High intensity discharge lamps; Plasma density; Plasma sheaths; Plasma temperature; Table lookup; Temperature distribution; Tungsten;
Conference_Titel :
Plasma Science, 2004. ICOPS 2004. IEEE Conference Record - Abstracts. The 31st IEEE International Conference on
Conference_Location :
Baltimore, MD, USA
Print_ISBN :
0-7803-8334-6
DOI :
10.1109/PLASMA.2004.1339874