首页> 外文会议>Symposium F: Third International Conference on Laser Ablation (Cola'95) of the 1995 E-Mrs Spring Conference May 22-26, 1995 Strasbourg, France >Energy-dispersive mass spectrometry of high energy ions generated during KrF excimer and frequency-doubled Nd:YAG laser ablation of metals
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Energy-dispersive mass spectrometry of high energy ions generated during KrF excimer and frequency-doubled Nd:YAG laser ablation of metals

机译:KrF准分子和金属倍频Nd:YAG激光烧蚀过程中产生的高能离子的能量色散质谱

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摘要

The accurate measurement of high energy ions (up to 500 eV) produced during the laser ablation process has been investigated using energy-dispersive mass spectrometry. A comparison between 5 J cm~(-2) ablation of metals, such as Cu and Fe, by 532 nm Nd:YAG and 248 nm excimer laser irradiation shows the effect of pulse duration on the kinetic energy distributions of the generated ions. The propagation of Fe~+ ions within the laser produced plasma through high vacuum shows significant modification due to ion acceleration processes with increasing distance from the target. Significantly, no attenuation of detected signal is observed with increased target-spectrometer distance, thus indicating a highly forward-peaked distribution of high energy ions.
机译:使用能量分散质谱法研究了在激光烧蚀过程中产生的高能离子(最高500 eV)的准确测量。对532 nm Nd:YAG和248 nm受激准分子激光辐照5 J cm〜(-2)烧蚀金属(例如Cu和Fe)和248 nm准分子激光的比较表明,脉冲持续时间对所产生离子的动能分布有影响。 Fe〜+离子通过高真空在激光产生的等离子体内的传播显示出显着的变化,这是由于离子加速过程随着距目标的距离增加而引起的。值得注意的是,随着目标光谱仪距离的增加,没有观察到检测到的信号衰减,因此表明高能离子的前向分布很高。

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