Yu Yanwu, Jiang Lan, Cao Qiang, Xia Bo, Wang Qingsong, Lu Yongfeng
Opt Express. 2015 Dec 14;23(25):32728-35. doi: 10.1364/OE.23.032728.
A pump-probe shadowgraph imaging technique was used to reveal the femtosecond-picosecond-nanosecond multitimescale fundamentals of high-quality, high-aspect-ratio (up to 287:1) microhole drilling in poly-methyl-meth-acrylate (PMMA) by a single-shot femtosecond laser Bessel beam. The propagation of Bessel beam in PMMA (at 1.98 × 10⁸ m/s) and it induced cylindrical pressure wave expansion (at 3000-3950 m/s in radius) were observed during drilling processes. Also, it was unexpectedly found that the expansion of the cylindrical pressure wave in PMMA showed a linear relation with time and was insensitive to the laser energy fluctuation, quite different from the case in air. It was assumed that the energy insensitivity was due to the anisotropy of wave expansion in PMMA and the ambient air.
采用泵浦-探测阴影成像技术,揭示了利用单脉冲飞秒激光贝塞尔光束在聚甲基丙烯酸甲酯(PMMA)中进行高质量、高纵横比(高达287:1)微孔钻削的飞秒-皮秒-纳秒多时间尺度基本原理。在钻孔过程中,观察到贝塞尔光束在PMMA中的传播速度为1.98×10⁸米/秒,以及它所诱导的圆柱压力波的扩展(径向速度为3000 - 3950米/秒)。此外,意外发现PMMA中圆柱压力波的扩展与时间呈线性关系,并且对激光能量波动不敏感,这与在空气中的情况有很大不同。据推测,能量不敏感是由于PMMA和周围空气中波扩展的各向异性所致。