首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Plume segregation observed in hydrogen and deuterium containing plasmas produced by laser ablation of carbon fiber tiles from a fusion reactor
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Plume segregation observed in hydrogen and deuterium containing plasmas produced by laser ablation of carbon fiber tiles from a fusion reactor

机译:在聚变反应堆中碳​​纤维砖的激光烧蚀产生的含氢和氘的等离子体中观察到气柱偏析

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The plasma produced by the irradiation of a hydrogen and deuterium containing carbon fiber composite with infrared laser pulses of 4-ns pulse duration has been investigated. The experiments were carried out under argon at reduced pressure. Microscopic analyses of the irradiated sample surface were performed to measure the ablation depth. Time- and space-resolved optical emission spectroscopy was applied to characterize the evolution of spectral line emission as a function of time and distance from the surface. Particular attention was paid to the time-of-flight characteristics of the hydrogen and deuterium Balmer a spectral lines. According to the different atomic masses of both isotopes, the expansion of hydrogen into the low pressure argon atmosphere was found to be slightly faster than that of deuterium. The effect of plume segregation is pressure dependent and tends to increase the analytical signal of heavy atoms with respect to lighter ones during laser-induced breakdown spectroscopy.
机译:已经研究了通过用4-ns脉冲持续时间的红外激光脉冲辐照含氢和氘的碳纤维复合材料产生的等离子体。实验是在氩气减压下进行的。进行了辐照样品表面的显微分析,以测量烧蚀深度。应用时间和空间分辨光发射光谱法来表征光谱线发射随时间和距表面距离的变化。特别注意氢和氘的Balmer a谱线的飞行时间特性。根据两种同位素的不同原子质量,发现氢气向低压氩气中的膨胀比氘快。羽流偏析的影响与压力有关,并且在激光诱导击穿光谱过程中,相对于轻原子,重原子的分析信号倾向于增加。

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