Pandey Arun, Bandyopadhyay M, Sudhir Dass, Chakraborty A
Institute for Plasma Research, HBNI, Bhat, Gujarat 382428, India.
ITER-India, Institute for Plasma Research, Ahmedabad, Gujarat 380005, India.
Rev Sci Instrum. 2017 Oct;88(10):103509. doi: 10.1063/1.4994058.
Helicon wave heated plasmas are much more efficient in terms of ionization per unit power consumed. A permanent magnet based compact helicon wave heated plasma source is developed in the Institute for Plasma Research, after carefully optimizing the geometry, the frequency of the RF power, and the magnetic field conditions. The HELicon Experiment for Negative ion-I source is the single driver helicon plasma source that is being studied for the development of a large sized, multi-driver negative hydrogen ion source. In this paper, the details about the single driver machine and the results from the characterization of the device are presented. A parametric study at different pressures and magnetic field values using a 13.56 MHz RF source has been carried out in argon plasma, as an initial step towards source characterization. A theoretical model is also presented for the particle and power balance in the plasma. The ambipolar diffusion process taking place in a magnetized helicon plasma is also discussed.
就每单位消耗功率的电离而言,螺旋波加热等离子体效率更高。等离子体研究所精心优化了几何结构、射频功率频率和磁场条件后,研制出了一种基于永磁体的紧凑型螺旋波加热等离子体源。负离子 -I源的螺旋实验是一种单驱动螺旋等离子体源,正被用于开发大型多驱动负氢离子源的研究。本文介绍了单驱动装置的详细情况以及该装置的特性表征结果。作为源特性表征的第一步,在氩等离子体中使用13.56 MHz射频源进行了不同压力和磁场值下的参数研究。还给出了等离子体中粒子和功率平衡的理论模型。文中也讨论了磁化螺旋等离子体中发生的双极扩散过程。