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Optimizing the Plasma startup through ECR plasma pre-ionization in Taban Tokamak via Triple Langmuir probe

机译:通过三重Langmuir探针通过Taban Tokamak中的ECR等离子体预电离来优化等离子体启动

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In the present study, a pre-ionization using a 2.45 GHz microwave through Electron Cyclotron Resonance (ECR) waves was investigated to assist the current startup in Taban tokamak. Since the characteristics of the ECR plasma depend on the gas pressure, the influence of changing the pressure of the filling gas on the ECR plasma parameters has been studied both theoretically and experimentally. Based on the obtained results, the optimum condition has been determined and the tokamak plasma parameters measured in optimal conditions are presented. A proper Triple Langmuir Probe (TLP) has been constructed and used in the experimental tests of this study. Using this diagnostic, the plasma parameters such as electron temperature, floating potential and density were measured. Steps to design and manufacture of the employed UP are presented in detail. Due to the importance of gas pressure in low frequency ECR startup, it is crucial to determine the optimal startup conditions through controlling the filling gas pressure.
机译:在本研究中,研究了使用2.45 GHz微波通过电子回旋共振(ECR)波进行预电离的方法,以协助Taban托卡马克的当前启动。由于ECR等离子体的特性取决于气压,因此在理论上和实验上都研究了填充气体压力的变化对ECR等离子体参数的影响。基于获得的结果,确定了最佳条件,并给出了在最佳条件下测量的托卡马克等离子体参数。适当的三重朗缪尔探针(TLP)已被构建并用于本研究的实验测试。使用该诊断程序,可以测量等离子体参数,例如电子温度,浮置电势和密度。详细介绍了设计和制造所用UP的步骤。由于气压在低频ECR启动中的重要性,因此至关重要的是通过控制填充气压来确定最佳启动条件。

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