Song Di, Wang Jiaqi, Wu Xinyang, Gao Liancong, Yang Jiao, Liu Xiaoxu, Luo Qing, Wang Dongdong, Wang You
Southwest Institute of Technical Physics, Chengdu 610041, China.
School of Physics and Technology, Xinjiang University, Urumqi 830046, China.
Micromachines (Basel). 2024 Aug 30;15(9):1101. doi: 10.3390/mi15091101.
Due to their excellent light transmission, heat resistance, corrosion resistance, high mechanical strength, and other characteristics, transparent materials have been widely used in emerging industries such as aviation, aerospace, microelectronics, interconnected communication, etc. Compared with the traditional mechanical processing and chemical processing of transparent materials, laser processing, with such characteristics as a high peak power, high energy density, and non-contact processing, has a lot of obvious advantages in processing efficiency and accuracy. In this paper, some of the recent research advancements concerning the laser processing of transparent materials are introduced in detail. Firstly, the basic mechanism of the interaction between the laser and material is briefly summarized on the time scale. The differences in principle between nanosecond, picosecond, and femtosecond pulse laser processing are analyzed. Then, the main technical means of the nanosecond laser processing of transparent materials are summarized. Next, the main application directions of the ultrafast laser processing of transparent materials are discussed, including the preparation of optical waveguide devices, periodic structure devices, micropores, and microchannels. Finally, this paper summarizes the prospects for the future development of laser processing transparent materials.
由于具有优异的透光性、耐热性、耐腐蚀性、高机械强度等特性,透明材料已广泛应用于航空、航天、微电子、互联通信等新兴产业。与传统的透明材料机械加工和化学加工相比,激光加工具有高峰值功率、高能量密度和非接触加工等特点,在加工效率和精度方面具有诸多明显优势。本文详细介绍了近年来透明材料激光加工的一些研究进展。首先,在时间尺度上简要总结了激光与材料相互作用的基本机理。分析了纳秒、皮秒和飞秒脉冲激光加工在原理上的差异。然后,总结了透明材料纳秒激光加工的主要技术手段。接下来,讨论了超快激光加工透明材料的主要应用方向,包括光波导器件、周期性结构器件、微孔和微通道的制备。最后,本文总结了激光加工透明材料未来发展的前景。