功率对电感耦合等离子体参数的影响

Hawraa Hafh Marza, Thamir H. Khalaf
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摘要

本文采用数值模拟的方法研究了功率变化对电感耦合等离子体参数的影响。输入功率为750 W-1500 W,气体温度为300K,气体压力为0.02torr,铜线圈转动5圈,在石英室上方线圈上以射频13.56 MHZ产生等离子体。为此,利用有限元方法对氩等离子体进行了二维轴对称的计算机模拟。基于这些结果,我们能够获得更高密度的等离子体,这通过获得等离子体参数(电子密度、电势、总功率、氩离子数密度、电子温度、激发氩原子数密度)来表示,其中产生的等离子体中的高密度提供了更大程度的材料加工,从而提高了系统的效率。这些结果可能有助于未来研究更有效地优化等离子体参数(电子密度、电势、总功率、氩离子数密度、电子温度和激发氩原子数密度)。
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The Effect of Power on Inductively Coupled Plasma Parameters
In this work, we studied the effect of power variation ​​on inductively coupled plasma parameters using numerical simulation. Different values ​​were used for input power (750 W-1500 W), gas temperature 300K, gas pressure (0.02torr),         5 tourns of the copper coil and the plasma was produced at radio frequency (RF) 13.56 MHZ on the coil above the quartz chamber. For the previous purpose, a computer simulation in two dimensions axisymmetric, based on finite element method, was implemented for argon plasma. Based on the results we were able to obtain plasma with a higher density, which was represented by obtaining the plasma parameters (electron density, electric potential, total power, number density of argon ions, electron temperature, number density of excited argon atoms) where the high density in the generated plasma provides a greater degree in material processing, which increases the efficiency of the system. These results may aid in future research towards the development of more efficient optimization of plasma parameters which are (electron density, electric potential, total power, number density of argon ions, electron temperature, and number density of excited argon atoms).        
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