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由预制表面凹槽引起的单脉冲飞秒激光诱导周期性表面结构形成的时间分辨测量。

Time-resolved measurement of single pulse femtosecond laser-induced periodic surface structure formation induced by a pre-fabricated surface groove.

作者信息

Kafka K R P, Austin D R, Li H, Yi A Y, Cheng J, Chowdhury E A

出版信息

Opt Express. 2015 Jul 27;23(15):19432-41. doi: 10.1364/OE.23.019432.

Abstract

Time-resolved diffraction microscopy technique has been used to observe the formation of laser-induced periodic surface structures (LIPSS) from the interaction of a single femtosecond laser pulse (pump) with a nano-scale groove mechanically formed on a single-crystal Cu substrate. The interaction dynamics (0-1200 ps) was captured by diffracting a time-delayed, frequency-doubled pulse (probe) from nascent LIPSS formation induced by the pump with an infinity-conjugate microscopy setup. The LIPSS ripples are observed to form asynchronously, with the first one forming after 50 ps and others forming sequentially outward from the groove edge at larger time delays. A 1-D analytical model of electron heating including both the laser pulse and surface plasmon polariton excitation at the groove edge predicts ripple period, melt spot diameter, and qualitatively explains the asynchronous time-evolution of LIPSS formation.

摘要

时间分辨衍射显微镜技术已被用于观察单个飞秒激光脉冲(泵浦)与机械加工在单晶铜衬底上的纳米级凹槽相互作用时激光诱导周期性表面结构(LIPSS)的形成过程。通过使用无限共轭显微镜装置,对由泵浦诱导产生的新生LIPSS形成过程中延迟的倍频脉冲(探测光)进行衍射,捕捉到了相互作用动力学(0 - 1200皮秒)。观察到LIPSS波纹是异步形成的,第一个波纹在50皮秒后形成,其他波纹在更大的时间延迟下从凹槽边缘依次向外形成。一个包含激光脉冲和凹槽边缘表面等离激元极化激元激发的一维电子加热分析模型预测了波纹周期、熔斑直径,并定性地解释了LIPSS形成的异步时间演化过程。

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