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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Development of Laser Photodetachment Technique Using Heated Probe to Eliminate the Effect of Probe Surface Ablation Phenomena
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Development of Laser Photodetachment Technique Using Heated Probe to Eliminate the Effect of Probe Surface Ablation Phenomena

机译:利用加热探针消除探针表面烧蚀现象影响的激光光解技术的发展

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摘要

The characteristics of the phenomena caused by laser irradiation to an electrostatic probe in plasmas are studied to avoid the disturbance of the laser photodetachment signals for negative ion density measurement. In helium-hydrogen and hydrogen-methane plasmas, a probe surface ablation phenomenon was observed as an anomalous excess electron current in response to the laser irradiation to the electrostatic probe, while the phenomenon was not observed in pure hydrogen plasmas. Contaminations of the probe surface appear to be the mechanism causing the ablation phenomena. In order to clean the probe surface, a filament-type heated probe, which is the same type of conventional emissive probe, is applied to the laser photodetachment technique. When the surface is cleaned by heating the probe, the ablation phenomenon disappears, and the negative ion density can be evaluated at a sufficiently high laser pulse energy to saturate the photodetachment rate of negative ions. The method developed in this paper is useful for the measurement of negative ion density in plasmas where the probe surface is easily contaminated.
机译:为了避免负离子密度测量中激光光解离信号的干扰,研究了等离子体中由激光辐射到静电探针引起的现象的特征。在氦-氢和氢-甲烷等离子体中,观察到探针表面烧蚀现象是响应于对静电探针的激光照射而产生的异常过量电子电流,而在纯氢等离子体中未观察到该现象。探针表面的污染似乎是引起烧蚀现象的原因。为了清洁探针表面,将与常规发射探针相同类型的细丝型加热探针应用于激光光分离技术。当通过加热探针清洁表面时,消融现象消失,并且可以在足够高的激光脉冲能量下评估负离子密度,以使负离子的光分离速率饱和。本文开发的方法可用于测量容易污染探头表面的等离子体中的负离子密度。

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