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XeF excimer laser ablation of metallic targets probed by energy-selective time-of-flight mass spectrometry

机译:XEF准分子激光消融通过能量选择性飞行时间质谱法探测的金属靶标

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The kinetic energy distributions (KEDs) of ions produced during XeF laser ablation of metallic targets (Al and Cu) have been investigated by energy selective time-of-flight mass spectrometry (ES-TOFMS). The observed Cu{sup}+ and Al{sup}+ emitted ions are characterised by a bimodal KED. The first peak is located at very low kinetic energy (~1 eV) and can be related to a thermionic component; the second one is strongly dependent on laser fluence and is due to energetic ions emitted from the laser produced plasma. In laser ablation of copper we observe only the thermal component at a laser fluence lower than ~2.5 J cm{sup}(-2), whereas for aluminium targets the high kinetic part is always present. This feature has been analysed in terms of the basic mechanisms involved in laser-vapour interaction and plume ionisation.
机译:通过能量选择性飞行时间质谱(ES-TOFM)研究了在XEF激光烧蚀期间产生的离子的动能分布(KEDS)进行了所产生的金属靶标(Al和Cu)。观察到的Cu {sup} +和Al {sup} +发射离子的特征在于双峰ked。第一峰位于非常低的动能(〜1eV),并且可以与热太极组分有关;第二个强烈依赖于激光物流量,并且是由于激光产生的等离子体发出的能量离子。在激光消融铜中,我们仅观察到低于〜2.5J厘米}( - 2)的激光器流量的热分量,而对于铝靶标,始终存在高动力学部分。已经根据激光相互作用和羽流电离所涉及的基本机制分析该特征。

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