首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effect of background gases at reduced pressures on the laser treated surface morphology, spectral emission and characteristics parameters of laser produced Mo plasmas
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Effect of background gases at reduced pressures on the laser treated surface morphology, spectral emission and characteristics parameters of laser produced Mo plasmas

机译:减压背景气体对激光处理后的Mo等离子体的表面形态,光谱发射和特征参数的影响

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摘要

Molybdenum owing to its high melting point and high reflectivity over a broad range of wavelengths has been used as first mirrors in EAST and HL-2A tokomaks and is also a candidate material for ITER mirrors. The effect of atmospheric conditions of Ar, N_2 and He at reduced pressure (2.0 × 10~(-4) to 5 mbar) on the physical processes of the atomic and background emission, mass ablation, electron density and temperature of a laser produced Mo plasma has been investigated in order to adapt Laser Induced Breakdown Spectroscopy (LIBS) for in situ diagnostic and cleaning of the first mirrors. The obtained results strongly indicate that pressure and physical properties of the background gases play a crucial role to interpret the emission (line and continuum background) and characteristic parameters (electron density and temperature) of the plasma. The plasma shielding effect was found less pronounced for He environment and it leads to enhancement of the material evaporation from the target surface.
机译:由于钼的熔点高和在宽广的波长范围内的高反射率,它已被用作EAST和HL-2A托马克的第一面镜子,也是ITER镜子的候选材料。减压(2.0×10〜(-4)至5 mbar)下的Ar,N_2和He的大气条件对激光产生的Mo的原子和背景发射,质量烧蚀,电子密度和温度的物理过程的影响为了使激光诱导击穿光谱法(LIBS)适用于第一面反射镜的原位诊断和清洁,已经对等离子体进行了研究。获得的结果强烈表明,背景气体的压力和物理性质在解释等离子体的发射(线和连续背景)和特征参数(电子密度和温度)方面起着至关重要的作用。发现等离子体屏蔽效应在He环境下不太明显,它导致材料从目标表面蒸发的增加。

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