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Hydrogen Atom Temperature Measured with Wavelength-Modulated Laser Absorption Spectroscopy in Large Scale Filament Arc Negative Hydrogen Ion Source

机译:用大规模灯丝弧负极氢离子源的波长调制激光吸收光谱测量氢原子温度

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The velocity distribution function of hydrogen atoms is one of the useful parameters to understand particle dynamics from negative hydrogen production to extraction in a negative hydrogen ion source. Hydrogen atom temperature is one of the indicators of the velocity distribution function. To find a feasibility of hydrogen atom temperature measurement in large scale filament arc negative hydrogen ion source for fusion, a model calculation of wavelength-modulated laser absorption spectroscopy of the hydrogen Balmer alpha line was performed. By utilizing a wide range tunable diode laser, we successfully obtained the hydrogen atom temperature of ~3000 K in the vicinity of the plasma grid electrode. The hydrogen atom temperature increases as well as the arc power, and becomes constant after decreasing with the filling of hydrogen gas pressure.
机译:氢原子的速度分布函数是了解来自负氢生产中的粒子动力学以在负氢离子源中提取的有用参数之一。氢原子温度是速度分布功能的指标之一。为了在大型灯丝电弧负极离子离子源中找到氢原子温度测量的可行性,进行了氢气BALMERα线的波长调制激光吸收光谱的模型计算。通过利用宽范围可调二极管激光,我们在等离子体栅极附近成功获得了〜3000k的氢原子温度。氢原子温度随着氢气压力的填充而减小后,氢原子温度和电弧功率增加。

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