Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia.
Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia.
Ultrason Sonochem. 2023 Jan;92:106243. doi: 10.1016/j.ultsonch.2022.106243. Epub 2022 Nov 28.
The nucleation and growth of cavitation bubbles few micrometers in size in water generated by a 60 ps 515 nm fiber laser is observed and visualized near nucleation threshold. The study is performed by monitoring the plasma size, the cavitation bubble size and the emitted shock waves. The latter two aspects are supported by the Gilmore model using a Noble-Abel-stiffened-gas (NASG) equations of state. For the first time, two types of cavitation events are identified and visualized that exhibit a difference of more than two orders of magnitude in the excitation energy converted to mechanical effects with minimal change in excitation laser pulse energy. The result is localized cavitation and reduced mechanical stress on water-based media with potentially positive implications for laser treatments of biological tissue.
在接近成核阈值的条件下,观察并可视化了由 60ps 515nm 光纤激光在水中产生的几微米大小的空化泡的成核和生长。通过监测等离子体尺寸、空化泡尺寸和发射的冲击波来进行这项研究。后两个方面得到了吉尔莫模型的支持,该模型使用了一种诺贝尔-亚伯-强化气体(NASG)状态方程。首次识别并可视化了两种类型的空化事件,它们在转换为机械效应的激发能方面存在两个数量级以上的差异,而激发激光脉冲能量的变化很小。其结果是局部空化和减少了水基介质的机械应力,这可能对生物组织的激光处理有积极影响。