Hayasaki Yoshio, Isaka Mitsuhiro, Takita Akihiro, Juodkazis Saulius
Center for Optical Research and Education (CORE), Utsunomiya University, Utsunomiya, Japan.
Opt Express. 2011 Mar 28;19(7):5725-34. doi: 10.1364/OE.19.005725.
We use an interferometric time-resolved observation of a femtosecond-laser pulse (800 nm/45 fs) interaction with glass from 100 fs to 10 ns at spatial lateral resolution down to the wavelength of the pulse. The phase and amplitude images reveal sequence of events after the irradiation of a single ultra-short laser pulse at close-to-threshold intensity when permanent refractive index changes occur. The proposed method is applicable to characterization of the processes induced by tightly focused fs-laser pulses during three-dimensional structuring of glasses and crystals for fundamental studies and optical applications. Generation of carriers, thermal expansion, generation and propagation of shockwaves, and formation of refractive index changes are experimentally observed and resolved in time and space with the highest resolution. Quantitative estimations of the threshold energies of different processes are achieved. The threshold energy of carrier generation is found the same as that of shockwave generation while the threshold energy of refractive index changes was by 40% higher. Application potential of the method is discussed.
我们使用干涉时间分辨观测技术,对飞秒激光脉冲(800纳米/45飞秒)与玻璃在100飞秒至10纳秒的相互作用进行观测,空间横向分辨率可达脉冲波长。当发生永久性折射率变化时,相位和振幅图像揭示了在接近阈值强度下单个超短激光脉冲辐照后的一系列事件。所提出的方法适用于表征在玻璃和晶体的三维结构化过程中,由紧聚焦飞秒激光脉冲诱导的过程,用于基础研究和光学应用。通过实验观察到了载流子的产生、热膨胀、冲击波的产生和传播以及折射率变化的形成,并在时间和空间上以最高分辨率进行了分辨。实现了对不同过程阈值能量的定量估计。发现载流子产生的阈值能量与冲击波产生的阈值能量相同,而折射率变化的阈值能量高40%。讨论了该方法的应用潜力。