DETERMINATION OF SEVERAL IMPORTANT PARAMETERS OF HOLLOW ELECTRODES ABNORMAL GLOW DISCHARGE PLASMA UNDER THE INFLUENCE OF MAGNETIC FIELD AT DIFFERENT GAS PRESSURES

Pshtiwan M. Karim, Diyar A. Sadiq, S. K. Al-Hakary
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Abstract

This paper investigates the impact of an axial magnetic field on several plasma parameters of hollow electrode argon abnormal glow discharge. The discharge is generated by applying a DC voltage ranging from 0-6KV. By varying the pressure and magnetic field strength (0-25mT), the plasma potential, frequency, and degree of ionization were measured. The plasma potential, frequency, and degree of ionization were evaluated using spectroscopic measurements of the electron temperature and density. The results of the experiment show that the plasma potential decreases as the magnetic field strength increases, while the plasma frequency increases for lower pressure but reaches a constant value for higher pressure due to the increasing number of excitation collisions among the plasma-charged particles. The degree of ionization, determined using the ideal gas law, shows a near-linear relationship with the axial magnetic field at both low and high pressure.
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测定不同气体压力下磁场影响下空心电极异常辉光放电等离子体的几个重要参数
本文研究了轴向磁场对空心电极氩异常辉光放电若干等离子体参数的影响。放电是通过施加 0-6KV 的直流电压产生的。通过改变压力和磁场强度(0-25mT),测量了等离子体电位、频率和电离程度。通过对电子温度和密度的光谱测量,对等离子体电位、频率和电离程度进行了评估。实验结果表明,等离子体电位随着磁场强度的增加而降低,而等离子体频率在压力较低时增加,但在压力较高时达到恒定值,这是由于等离子体带电粒子之间的激发碰撞次数增加所致。利用理想气体定律测定的电离度在低压和高压下都与轴向磁场呈近似线性关系。
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