Sun Xiaoyan, Zhou Fang, Duan Lian
State Key Laboratory of High Performance Complex Manufacturing, Central South University, Changsha 410083, China.
Micromachines (Basel). 2022 Aug 10;13(8):1285. doi: 10.3390/mi13081285.
In recent years, micro-annular beams have been widely used, which has expanded the possibilities for laser processing. However, the current method of generating an annular beam still has shortcomings, such as spot energy at the center of the produced beam. In this study, a Fresnel zone plate with an annular structure was machined using a femtosecond laser. After focusing, an annular laser beam without a spot in the center was obtained, and the radius and focal length of the annular beam could be easily adjusted. In addition, two annular Fresnel zone plates were concentrically connected to obtain a concentric double-ring beam in the same focal plane. The simulation and experimental results were consistent, providing effective potential for applications related to nontraditionally shaped laser beams.
近年来,微环形光束得到了广泛应用,这拓展了激光加工的可能性。然而,目前产生环形光束的方法仍存在缺点,比如所产生光束中心的光斑能量问题。在本研究中,使用飞秒激光加工了具有环形结构的菲涅耳波带片。聚焦后,获得了中心无光斑的环形激光束,并且环形光束的半径和焦距能够轻松调节。此外,将两个环形菲涅耳波带片同心连接,在同一焦平面上获得了同心双环光束。模拟和实验结果一致,为与非传统形状激光束相关的应用提供了有效的潜力。