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    题名 作者 年代 出处 被引量
1飞秒脉冲激光的时空变换影响纳米光栅直写过程的研究进展显示文摘超短脉冲的时空特性已经展示了对材料改性的重要影响,在过去十几年迅速成为飞秒激光微加工领域的研究热点。为此,简要从飞秒脉冲时空耦合的基本概念出发,回顾了实验中观察到的时空耦合效应及基于时空耦合的时空聚焦技术,介绍了时空聚焦技术在加工领域的应用,重点讨论了时空耦合对透明材料内部的非互逆性直写及不对称纳米光栅结构的影响。李跃东 尹唯一 戴晔 2020激光与光电子学进展2020,57,11:2
2Electrons dynamics control by shaping femtosecond laser pulses in micro/nanofabrication: modeling, method, measurement and application显示文摘During femtosecond laser fabrication,photons are mainly absorbed by electrons,and the subsequent energy transfer from electrons to ions is of picosecond order.Hence,lattice motion is negligible within the femtosecond pulse duration,whereas femtosecond photon-electron interactions dominate the entire fabrication process.Therefore,femtosecond laser fabrication must be improved by controlling localized transient electron dynamics,which poses a challenge for measuring and controlling at the electron level during fabrication processes.Pump-probe spectroscopy presents a viable solution,which can be used to observe electron dynamics during a chemical reaction.In fact,femtosecond pulse durations are shorter than many physical/chemical characteristic times,which permits manipulating,adjusting,or interfering with electron dynamics.Hence,we proposed to control localized transient electron dynamics by temporally or spatially shaping femtosecond pulses,and further to modify localized transient materials properties,and then to adjust material phase change,and eventually to implement a novel fabrication method.This review covers our progresses over the past decade regarding electrons dynamics control(EDC)by shaping femtosecond laser pulses in micro/nanomanufacturing:(1)Theoretical models were developed to prove EDC feasibility and reveal its mechanisms;(2)on the basis of the theoretical predictions,many experiments are conducted to validate our EDC-based femtosecond laser fabrication method.Seven examples are reported,which proves that the proposed method can significantly improve fabrication precision,quality,throughput and repeatability and effectively control micro/nanoscale structures;(3)a multiscale measurement system was proposed and developed to study the fundamentals of EDC from the femtosecond scale to the nanosecond scale and to the millisecond scale;and(4)As an example of practical applications,our method was employed to fabricate some key structures in one of the 16 Chinese National S&T Major Projects,for which electron dynamics were measured using our multiscale measurement system.Lan Jiang An-Dong Wang Bo Li Tian-Hong Cui Yong-Feng Lu 2017Light(Science & Applications)2017,6,1:2
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