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Data on laser induced preferential crystal (re)orientation by picosecond laser ablation of zinc in air

机译:皮秒激光烧蚀空气中锌引起的激光诱导的优先晶体(重新)取向的数据

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摘要

Laser ablation of zinc is performed with a 6.7 ps pulsed laser source to investigate the ablation mechanism and resulting morphology of the irradiated surface. The data shows the changes in crater morphology, as well as chemical composition, for different number of pulses and laser fluence levels. We observed Laser Induced Preferential Crystal Orientation (LIPCO), as a result of ultra-short pulsed laser processing of Zn at a wavelength of 515 nm. Crystallographic data for other laser wavelengths, namely 343 and 1030 nm, as well as for Zn coated steel are also provided in support of this observation. Data presented in this article are related to the research article “Investigation of the ultrashort pulsed laser processing of zinc at 515 nm: morphology, crystallography and ablation threshold” [1].
机译:用6.7 ps脉冲激光源对锌进行激光烧蚀,以研究烧蚀机理以及所产生的被辐照表面形态。数据显示了在不同数量的脉冲和激光注量水平下弹坑形态以及化学成分的变化。我们观察到激光诱导的优先晶体取向(LIPCO),这是对515 nm波长的Zn进行超短脉冲激光处理的结果。还提供了其他激光波长(即343和1030 nm)以及镀锌钢的晶体学数据,以支持此观察。本文提供的数据与研究文章“在515 nm处对锌进行超短脉冲激光加工的研究:形貌,晶体学和烧蚀阈值”有关[1]。

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