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Femtosecond, Picosecond and Nanosecond Laser Microablation: Laser Plasma and Crater Investigation

机译:飞秒,皮秒和纳秒激光微烧蚀:激光等离子体和火山口研究

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Crater shapes and plasma plume expansion in the interaction of sharply focused laser beams (10 mu m waist diameter, 60 fs -6 ns pulse duration) with metals in air at atmospheric pressure were studied. Laser ablation efficiencies and rates of plasma expansion were obtained. The best ablation efficiency was observed with femtosecond laser pulses. It was found that for nanosecond pulses the laser beam absorption, its scattering and reflection in plasma were the limiting factors for efficient laser ablation and precise material sampling with sharply focused laser beams. The experimental results obtained were analyzed with relation to different theoretical models of laser ablation.
机译:研究了在大气压力下,急剧聚焦的激光束(腰部直径10μm,脉冲持续时间60 fs -6 ns)与金属的相互作用中的陨石坑形状和等离子羽流膨胀。获得了激光烧蚀效率和等离子体膨胀率。飞秒激光脉冲观察到最佳的消融效率。发现对于纳秒脉冲,激光束的吸收,其在等离子体中的散射和反射是有效激光烧蚀和使用聚焦强烈的激光束进行精确材料采样的限制因素。结合不同的激光烧蚀理论模型对获得的实验结果进行了分析。

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