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    • 摘要: 三维光泡,即紧聚焦三维中空暗场光斑分布,在光学操控以及激光加工等领域中具有重要的应用价值。在已报道的工作中,三维光泡一般采用多光束干涉叠加的方式来产生,光路复杂,不利于系统集成应用,且能量利用率低。利用单光束矢量光场调控技术,产生高强度均匀性紧聚焦三维光泡,并利用探测光偏振转换技术实现对三维光泡的探测。通过调节旋向偏振入射光与0/π二元相位调制的径向偏振入射光的能量比,在实验上实现边缘强度与中心暗斑强度比值大于10:1、边缘强度均匀度接近90%的三维光泡,为双光束超分辨激光加工与光存储、粒子操控等领域提供实用的技术途径。

       

      Abstract: Optical bubble, characterized by a tightly focused three-dimensional dark-field intensity distribution, exhibits significant application value in fields such as optical manipulation and laser processing. In previously reported results, an optical bubble is typically generated through multi-beam interference and superposition, which involves complex optical setups and is not conducive to system integration and practical applications, and has low energy utilization efficiency. In this study, we utilize single-beam vector field modulation technology to generate a tightly focused optical bubble with high intensity uniformity. Furthermore, we achieve the detection of this hollow bubble through polarization conversion of the probe light. By adjusting the energy ratio between azimuthally polarized incident beam and radially polarized incident beam modulated by a 0/π binary phase, we experimentally realize an optical bubble with an edge-to-center dark spot intensity ratio exceeding 10:1 and edge intensity uniformity approaching 90%. This work provides a feasible technical approach for applications in dual-beam super-resolution laser processing, optical data storage, and particle manipulation.