Study the effect of cathode geometry on I-V characteristics of nitrogen dc glow discharge

A. A. Khadayeir, Wessam M. Taher
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Abstract

In this paper, the I-V characteristic of a dc glow discharge are studied with the aim of determine the performance a good parametersfor stable operation of the plasma. Nitrogen plasma produced by dc glow discharge is the investigated with a manypurpose of studying plasma phenomena, the discharge system consists of two electrodes, the cathode forms various geometrical shapes and anode as a disc- shaped with diameter (8.8cm). The electrodes are enclosed in a large cylindrical glass chamber of pyrex filled with nitrogen gas. Two important physical parameters affecting the condition of the discharge are the gas pressure and constant inter-electrode distance. The discharge current-voltage (I-V) characteristic curves of the discharge were measured at variable pressure and the inter-electrode spacing, Current-voltage characteristics visualization of the discharge indicate that the discharge is take place in the normal glow region. The (I-V) characteristics of nitrogen gas discharge were deduced as a plasma system operated in normal glow discharge nitrogen, which is very important parameter in the sputtering and deposition. Also, the discharge current is increased for nitrogen plasma discharge with the increasing of the working pressure lead to increase the deposition rate. DIO.: http://dx.doi.org/10.31257/2018/JKP/2019/110110
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研究阴极几何形状对氮直流辉光放电I-V特性的影响
本文研究了直流辉光放电的I-V特性,目的是确定等离子体的性能和稳定运行的良好参数。以直流辉光放电产生的氮等离子体为研究对象,该放电系统由两个电极组成,阴极呈各种几何形状,阳极呈直径为8.8cm的圆盘状。电极被封闭在一个充满氮气的大圆柱形耐热玻璃室中。影响放电条件的两个重要物理参数是气体压力和电极间的恒定距离。在变压力和电极间距下测量了放电的电流-电压(I-V)特性曲线,显示了放电的电流-电压特性,表明放电发生在正常发光区域。推导了等离子体系统在正常辉光放电氮气条件下的放电(I-V)特性,这是溅射和沉积过程中的一个重要参数。氮等离子体放电的放电电流随着工作压力的增大而增大,导致沉积速率增大。戴奥。: http://dx.doi.org/10.31257/2018/JKP/2019/110110
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