首页> 外文会议>Conference on commercial and biomedical applications of ultrafast lasers IX; 20090125-28; San Jose, CA(US) >Ultrashort pulse laser drilling of metals using a high repetition rate, high average power fiber CPA system
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Ultrashort pulse laser drilling of metals using a high repetition rate, high average power fiber CPA system

机译:使用高重复频率,高平均功率光纤CPA系统对金属进行超短脉冲激光钻孔

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We present an experimental study of the drilling of metal targets with ultrashort laser pulses with pulse durations from 800 fs to 19 ps at repetition rates up to 1 MHz, average powers up to 70 Watts, using an Ytterbium-doped fiber CPA system. Particle shielding and heat accumulation have been found to influence the drilling efficiency at high repetition rates. Particle shielding causes an increase in the number of pulses for breakthrough. It occurs at a few hundred kHz, depending on the pulse energy and duration. The heat accumulation effect is noticed at higher repetition rates. Although it overbalances the particle shielding thus making the drilling process faster, heat accumulation is responsible for the formation of a large amount of molten material that limits the hole quality. The variations of the pulse duration reveal that heat accumulation starts at higher repetition rates for shorter pulse lengths. This is in agreement with the observed higher ablation efficiency with shorter pulse duration. Thus, the shorter pulses might be advantageous if highest precision and processing speed is required.
机译:我们提出了使用掺short光纤CPA系统,以高达1 MHz的重复频率,平均功率高达70瓦,脉冲持续时间从800 fs至19 ps的超短激光脉冲钻削金属靶的实验研究。已经发现,在高重复率下,颗粒屏蔽和热量积累会影响钻孔效率。粒子屏蔽导致穿透脉冲数量增加。它的发生频率为几百kHz,具体取决于脉冲能量和持续时间。在较高的重复率下会发现热量的积聚效果。尽管它过分平衡了粒子屏蔽,从而使钻孔过程更快,但热量积聚却导致形成大量熔融材料,从而限制了孔的质量。脉冲持续时间的变化表明,对于较短的脉冲长度,热量累积会以较高的重复频率开始。这与观察到的更高的消融效率和更短的脉冲持续时间一致。因此,如果需要最高的精度和处理速度,则较短的脉冲可能是有利的。

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