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Three-dimensional micro- and nano-fabrication in transparent materials by femtosecond laser

机译:飞秒激光在透明材料中进行三维微纳米加工

摘要

Femtosecond pulsed lasers have been widely used for materials microprocessing. Due to their ultrashort pulse width and ultrahigh light intensity, the process is generally characterized by the nonthermal diffusion process. We observed various induced microstructures such as refractive-index-changed structures, color center defects, microvoids and microcracks in transparent materials (e.g., glasses after the femtosecond laser irradiation), and discussed the possible applications of the microstructures in the fabrication of various micro optical devices [e.g., optical waveguides, microgratings, microlenses, fiber attenuators, and three-dimensional (3D) optical memory]. In this paper, we review our recent research developments on single femtosecond-laser-induced nanostructures. We introduce the space-selective valence state manipulation of active ions, precipitation and control of metal nanoparticles and light polarization-dependent permanent nanostructures, and discuss the mechanisms and possible applications of the observed phenomena.
机译:飞秒脉冲激光器已广泛用于材料微处理。由于其超短脉冲宽度和超高光强度,该过程通常以非热扩散过程为特征。我们在透明材料(例如飞秒激光辐照后的玻璃)中观察到各种诱发的微结构,例如折射率变化的结构,色心缺陷,微孔和微裂纹,并讨论了微结构在各种微光学器件制造中的可能应用设备[例如,光波导,微光栅,微透镜,光纤衰减器和三维(3D)光学存储器]。在本文中,我们回顾了我们在单飞秒激光诱导的纳米结构上的最新研究进展。我们介绍了活性离子的空间选择性价态操纵,金属纳米颗粒的沉淀和控制以及与光偏振有关的永久纳米结构,并讨论了观察到的现象的机理和可能的应用。

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