首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Liquid assisted ablation of zirconium for the growth of LIPSS at varying pulse durations and pulse energies by femtosecond laser irradiation
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Liquid assisted ablation of zirconium for the growth of LIPSS at varying pulse durations and pulse energies by femtosecond laser irradiation

机译:飞秒激光辐照液体辅助烧蚀锆在不同的脉冲持续时间和脉冲能量下生长LIPSS

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Investigations have been performed to explore the optimized conditions for the growth of Laser Induced Periodic Surface Structures (LIPSS) by varying pulse durations and pulse energies during ultrashort pulsed laser ablation of zirconium (Zr). The Ti: Sapphire laser with central wavelength of 800 nm, maximum pulse energy of 1 mJ is used to ablate Zr targets in the wet environment of ethanol. Scanning Electron Microscope (SEM) analysis was performed for central as well as the peripheral ablated area to characterize nano and microstructures formed on the Zr surface. Raman spectroscopy was carried out to explore the chemical and compositional changes produced in laser ablated Zr. In order to explore the effect of varying pulse durations ranging from 25 to 100 fs, targets were exposed to 1000 succeeding pulses keeping the pulse energy constant at 600 μJ. The micrographs of peripheral ablated areas reveal the formation of nano scale ripples or Laser Induced Periodic Surface Structures (LIPSS) for all pulse durations. LIPSS are more distinct and well organized for the shortest pulse duration of 25 fs. Whereas, LIPSS become diffused and indistinct with the increase in the pulse duration. This is the clear indication that shortest pulse duration (in our case 25 fs) is most suitable for the growth of nanoscale ripples. In order to explore the effect of varying pulse energies on the growth of LIPSS, targets were exposed to 1000 succeeding pulses with energies ranging from 200 μJ to 600 μJ for a pulse duration of 25 fs. In the peripheral ablated areas LIPSS are grown for all pulse energies. For the lowest pulse energy of 200 μJ, LIPSS are distinct and well defined. For intermediate energies of 300 and 400 μJ they become diffused and indistinct. For higher pulse energies of 500 and 600 μJ, their appearance again becomes well defined and distinct. For central ablated areas LIPSS are grown but their appearance diffuses with increasing pulse energies. For the highest pulse energy they are completely vanished. Raman spectroscopy reveals that in the presence of liquids the chemical reactivity of the target with liquid is significantly enhanced which is responsible for the growth of new phases and modification in the chemical composition of the irradiated Zr. The ethanol forms the carbonyl compounds with the Zr and induces C-C stretching. The reactivity of Zr with oxygen is responsible for the formation of tetragonal phase and monoclinic phase of zirconia.
机译:已经进行了研究,以探索通过在超短脉冲激光烧蚀锆(Zr)期间改变脉冲持续时间和脉冲能量来生长激光诱导的周期性表面结构(LIPSS)的最佳条件。中心波长为800 nm,最大脉冲能量为1 mJ的Ti:蓝宝石激光器用于在乙醇潮湿的环境中烧蚀Zr靶材。对中心和外围烧蚀区域进行了扫描电子显微镜(SEM)分析,以表征Zr表面形成的纳米结构和微观结构。进行拉曼光谱研究以探索激光烧蚀Zr中产生的化学和成分变化。为了探究从25到100 fs范围内变化的脉冲持续时间的影响,将目标暴露于1000个后续脉冲中,使脉冲能量恒定在600μJ。外围烧蚀区域的显微照片揭示了在所有脉冲持续时间内,纳米级波纹或激光诱导的周期性表面结构(LIPSS)的形成。 LIPSS在25 fs的最短脉冲持续时间内更具特色和组织良好。然而,随着脉冲持续时间的增加,LIPSS变得分散而模糊。这清楚地表明,最短的脉冲持续时间(在我们的情况下为25 fs)最适合纳米级纹波的增长。为了探究脉冲能量的变化对LIPSS生长的影响,将目标暴露于1000次连续脉冲,能量范围为200μJ至600μJ,脉冲持续时间为25 fs。 LIPSS在外围烧蚀区域中生长,用于所有脉冲能量。对于200μJ的最低脉冲能量,LIPSS是独特且定义明确的。对于300和400μJ的中间能量,它们会扩散而变得模糊。对于500和600μJ的较高脉冲能量,它们的外观再次变得清晰且清晰。对于中心消融区域,LIPSS得以生长,但其外观随着脉冲能量的增加而扩散。为了获得最高的脉冲能量,它们完全消失了。拉曼光谱法表明,在液体存在下,靶标与液体的化学反应性显着增强,这负责新相的生长和被辐照Zr的化学组成的改变。乙醇与Zr形成羰基化合物并诱导C-C拉伸。 Zr与氧的反应性负责氧化锆的四方相和单斜相的形成。

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