首页> 外文会议>Frontiers in ultrafast optics: biomedical, scientific, and industrial applications XIII >Study on the influence of repetition rate and pulse duration on ablation efficiency using a new generation of high power Ytterbium doped fiber ultrafast laser
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Study on the influence of repetition rate and pulse duration on ablation efficiency using a new generation of high power Ytterbium doped fiber ultrafast laser

机译:新一代大功率掺ped光纤超快激光器研究重复频率和脉冲持续时间对烧蚀效率的影响

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Ultrafast laser are well known to provide cold ablation on metals at near-threshold fluence and low repetition rate. However increasing the repetition rate from multi-kHz to MHz may produce a heat accumulation in the target depending on both the scanning speed and the material properties. This potentially leads to two effects: enhanced ablation efficiency as well as increased heat affected zone. To identify potentials and limitations while maintaining highest processing quality is the main objective of this paper and a key issue for many industrial applications. We present some comprehensive results on the influence of both repetition rate and pulse duration on the ablation efficiency. This investigation is performed using a new generation of high power Ytterbium doped fiber ultrafast laser with a tunable pulse duration ranging from 350fs to 10ps and with repetition rate going from 250kHz to 2MHz. The output power is up to 40 watt. The effect of both parameters above on ablation efficiency of Al, Cu and Mo is discussed with respect to removal rate measurement and SEM analysis.
机译:众所周知,超快激光能以接近阈值的通量和低重复率在金属上提供冷烧蚀。但是,根据扫描速度和材料特性,将重复频率从数kHz提高到MHz可能会在目标中产生热量积聚。这有可能导致两种效果:提高烧蚀效率以及增加热影响区。在保持最高处理质量的同时识别潜力和局限性是本文的主要目标,也是许多工业应用中的关键问题。我们对重复频率和脉冲持续时间对消融效率的影响提出了一些综合的结果。这项研究是使用新一代高功率掺do光纤超快激光器进行的,该激光器的可调脉冲持续时间范围从350fs至10ps,重复频率从250kHz至2MHz。输出功率高达40瓦。关于去除速率测量和SEM分析,讨论了以上两个参数对Al,Cu和Mo的烧蚀效率的影响。

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