Agrež Vid, Požar Tomaž, Petkovšek Rok
Opt Lett. 2020 Mar 15;45(6):1547-1550. doi: 10.1364/OL.388444.
An adaptable, laser-diode-based illumination system was developed to simultaneously visualize the dynamics of slow and fast phenomena in optically transparent media. The system can be coupled with still or high-speed cameras and makes it possible to generate an arbitrary train of illumination pulses with a variable pulse duration, pulse energy, and an intrapulse delay with a temporal resolution of 12.5 ns. Its capabilities are presented with selected illustrative visualizations of the dynamics of the shock waves and the cavitation entities generated after the laser-induced breakdown in water.
开发了一种基于激光二极管的适应性照明系统,用于同时可视化光学透明介质中缓慢和快速现象的动态过程。该系统可与静态或高速相机耦合,能够生成具有可变脉冲持续时间、脉冲能量和脉冲内延迟的任意照明脉冲序列,时间分辨率为12.5纳秒。通过对水中激光诱导击穿后产生的冲击波和空化实体的动态过程进行选定的示例性可视化展示了其功能。