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Effect of negative oxygen ions on the characteristics of plasma in a cylindrical DC discharge

机译:负氧离子对圆柱形直流放电等离子体特性的影响

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Langmuir probe measurements are performed in cylindrical dc glow discharge plasma. Plasma was generated in an evacuated glass tube, with circular plane disk electrodes. Measurements were carried out at different points along the axis of tube for different working pressures of pure argon and mixture of argon–oxygen gasses to obtain the plasma density and temperature as well as plasma and floating potentials. Variation of discharge potential as a function of discharge pressure for both plasmas is observed. It is shown that electron temperature, plasma potential, and floating potential in constant current mode and constant pressure are increased from cathode to anode on the axial points of the discharge tube, while electron density is decreased. To sustain the discharge process after adding oxygen to plasma, higher voltage is required since electrons are more energetic at lower density.
机译:Langmuir探头的测量在圆柱形直流辉光放电等离子体中进行。在具有圆形平面圆盘电极的真空玻璃管中产生等离子体。沿着管轴的不同点对纯氩气和氩气-氧气混合物的不同工作压力进行了测量,以获得等离子体密度和温度以及等离子体和浮置电势。观察到两种等离子体的放电电势随放电压力的变化。结果表明,在恒定电流模式和恒定压力下,电子温度,等离子体电势和浮置电势在放电管的轴向点从阴极到阳极增加,而电子密度降低。为了在向等离子体中添加氧气后维持放电过程,需要较高的电压,因为电子在较低的密度下能量更高。

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