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Ablation thresholds in ultrafast laser micro-machining of common metals in air

机译:空气中常见金属的超快激光微加工中的烧蚀阈值

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In the current work ablation of metal targets in air with femtosecond laser pulses is studied. The laser pulses used for the study were 775 nm in wavelength, 150 fs in pulse duration and the repetition rate was 100 Hz. Ablation thresholds have been measured for a number of metals including stainless steel (0.1600 J/cm~2), niobium (0.1460 J/cm~2), titanium (0.1021 J/cm~2) and copper (0.3529 J/cm~2). The ablation depth per pulse was measured for laser pulse fluences ranging from the ablation threshold (of most metals) - 0.1 J/cm~2 up to 10 J/cm~2. It has been shown previously that there are two different ablation regimes. In both cases the ablation depth per pulse depends logarithmically on the laser fluence. Whilst operating in the first ablation regime the ablation rate is low and is dependant on the optical penetration depth, a~(-1). While in the second ablation regime the ablation rate is greater and is characterized by the "electron heat diffusion length" or the "effective heat penetration depth", 1. In the present study good qualitative agreement in the ablation curve trends was observed with the data of other authors, e.g. Nolte et al (1997).
机译:在当前的工作中,研究了用飞秒激光脉冲烧蚀空气中的金属靶材。用于研究的激光脉冲的波长为775 nm,脉冲持续时间为150 fs,重复频率为100 Hz。已经测量了多种金属的烧蚀阈值,包括不锈钢(0.1600 J / cm〜2),铌(0.1460 J / cm〜2),钛(0.1021 J / cm〜2)和铜(0.3529 J / cm〜2) )。测量每个脉冲的烧蚀深度,测量激光脉冲通量的范围为(大多数金属)烧蚀阈值-0.1 J / cm〜2到10 J / cm〜2。先前已证明存在两种不同的消融方案。在这两种情况下,每个脉冲的烧蚀深度在对数上取决于激光能量密度。在第一烧蚀方案中操作时,烧蚀率低并且取决于光学穿透深度a〜(-1)。在第二种烧蚀方式中,烧蚀率更高,并且以“电子热扩散长度”或“有效热穿透深度”为特征。1.在本研究中,根据数据观察到的烧蚀曲线趋势具有良好的定性一致性其他作者,例如Nolte等人(1997)。

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