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Role of Al-O_2 chemistry in the laser-induced vaporization of Al films in air

机译:Al-O_2化学在空气中激光诱导的铝膜汽化中的作用

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摘要

Evidence for the prominent role of atypical reactions, and enhanced vaporization arising from resonant optical absorption of the exciting beam, in the pulsed-laser heating of thin films is presented. Time-resolved emission of Al and the reaction product AlO are monitored in the laser vaporization of Al films in air. Optical emission is observed up to 200 microseconds after an 8 #mu#s heating pulse, indicative of long chemical lifetimes. Furthermore, increased emission from both Al and AlO up to 100 #mu#s after the heating pulse, are observed when the laser wavelength is tuned to resonance with AlO transitions. Since the electronic resonance with the reaction product AlO affects the subsequent emission of Al, these measurements underscore the importance of physical and chemical processes peculiar to laser-induced vaporization, and ablation.
机译:提出了非典型反应的显着作用的证据,以及在薄膜的脉冲激光加热中由激发光束的共振光吸收引起的增强的汽化作用。在空气中Al膜的激光汽化中监测Al和反应产物AlO的时间分辨排放。在8#μs的加热脉冲后直至200微秒观察到光发射,表明化学寿命长。此外,当将激光波长调谐到与AlO跃迁共振时,观察到加热脉冲后,Al和AlO的发射增加到100#mu#s。由于与反应产物AlO的电子共振会影响随后的Al释放,因此这些测量结果突显了激光诱导的汽化和烧​​蚀所特有的物理和化学过程的重要性。

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