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Investigation on single-pulse 266 nm nanosecond laser and 780 nm femtosecond laser ablation of sapphire

机译:单脉冲266 nm纳秒激光和780 nm femtosecond激光消融蓝宝石的调查

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Investigation on single-pulse 266 nm nanosecond laser and 780 nm femtosecond laser ablation of sapphire was carried out. Diameter, depth and volume of ablated holes varying with laser density is studied. The results show that 266 nm nanosecond laser ablation of sapphire is caused by photochemical and photothermal effects. 780 nm femtosecond laser ablation of sapphire is due to "cooling" ablation. As energy density increases, thermal effect still exists, yet being much less significant, while ablation mass is greater than that by nanosecond laser. In nanosecond and femtosecond laser ablation, the ablation efficiency increase first and then decrease due to plasma shielding. Ablation efficiency is higher by nanosecond laser than by femtosecond laser at the same laser density. The ablation efficiency reaches the maximum at the energy density of 55.32 J/cm~2 to 68.43J/cm~2. However, 780 nm femtosecond laser could machine a microstructure with larger depth diameter ratio at lower density.
机译:进行了对蓝宝石的单脉冲266nm纳秒激光和780nm Femtosecond激光烧蚀的研究。研究了激光密度变化的烧蚀孔的直径,深度和体积。结果表明,266nm纳秒激光消融蓝宝石是由光化学和光热效应引起的。 780 NM Femtosecond激光消融蓝宝石是由于“冷却”消融。随着能量密度的增加,热效应仍然存在,但却不太显着,而消融物质大于纳秒激光的烧蚀质量大。在纳秒和飞秒激光消融中,消融效率首先增加,然后由于等离子体屏蔽而减小。纳秒激光器比相同激光密度的飞秒激光纳米光功率更高。消融效率以55.32J / cm〜2至68.43J / cm〜2的能量密度达到最大值。然而,780 nm Femtosecond激光器可以在密度下,更大深度比的微观结构。

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