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Surface plasmon assisted laser ablation of stainless steel

机译:表面等离子体辅助激光消融不锈钢

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摘要

Colloidal Au nanoparticles (NPs) were decorated on stainless steel for surface plasmon enhanced laser ablation. A comparative study of the laser ablation efficiency was carried out on stainless steel samples with and without the Au NPs decoration at a variable pulsed laser fluence and laser pulse number. Higher ablation efficiency was clearly demonstrated in the former as illustrated from the larger diameter, maximum depth and the cross-sectional area of the crater generated by the laser ablation under the same conditions. Additionally, both the maximum depth and efficiency enhancement were found to depend on the laser fluence and pulse number. The maximum enhanced ablation efficiency of 36% based on the cross-sectional area of the crater was obtained at 1 pulse number of laser fluence 1.53 J cm(-2). The efficiency enhancement of laser ablation is attributed to the highly enhanced surface plasmon field at the interface between Au NPs and stainless steel.
机译:胶体Au纳米颗粒(NPS)在不锈钢上装饰,用于表面等离子体增强的激光烧蚀。 激光烧蚀效率的比较研究在不锈钢样品上进行,在可变脉冲激光器流量和激光脉冲数处,没有Au nps装饰。 在前者中清楚地证明了更高的消融效率,如在相同条件下激光消融的较大直径,最大深度和喷射口的横截面积的较大直径,最大深度和横截面积。 此外,发现最大深度和效率增强依赖于激光流量和脉冲数。 基于火山口的横截面积的最大增强效率为36%,在1脉冲数为1.53J厘米(-2)。 激光烧蚀的效率增强归因于Au NP和不锈钢之间的界面处的高度增强的表面等离子体场。

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