Xu Chuangjie, Hu Hongcheng, Liu Yujun, Deng Dongmei
Opt Lett. 2020 Mar 15;45(6):1451-1454. doi: 10.1364/OL.389753.
In this Letter, we introduce a new kind of radially polarized beam called the radially polarized symmetric Airy beam (RPSAB). Compared to the linearly polarized symmetric Airy beam (SAB), the hollow focus spot of RPSAB enables it to trap a microparticle whose refractive index is lower than that of the surrounding medium, and the focus intensity of RPSAB is nearly three times higher than that of SAB under the same conditions. Also, we present the on-axis and off-axis radially polarized symmetric Airy vortex beam (RPSAVB). In the on-axis case, we find the maximum intensity of RPSAVB is about two times higher than that of RPSAB. For the off-axis case, we prove that slight misalignment of the vortex and RPSAB enables guiding the vortex into one of the self-accelerating channels, the same as the symmetric Airy vortex beam. Our results may expand the applications of RPSAB in laser cutting, metal processing, nanofocusing, and three-dimensional trapping of metallic Rayleigh particles.
在本信函中,我们介绍了一种新型的径向偏振光束,称为径向偏振对称艾里光束(RPSAB)。与线性偏振对称艾里光束(SAB)相比,RPSAB的中空焦点光斑使其能够捕获折射率低于周围介质的微粒,并且在相同条件下,RPSAB的焦点强度几乎比SAB高两倍。此外,我们还提出了轴向和离轴径向偏振对称艾里涡旋光束(RPSAVB)。在轴向情况下,我们发现RPSAVB的最大强度约为RPSAB的两倍。对于离轴情况,我们证明涡旋与RPSAB的轻微失准能够将涡旋引导到其中一个自加速通道中,这与对称艾里涡旋光束的情况相同。我们的结果可能会扩展RPSAB在激光切割、金属加工、纳米聚焦以及金属瑞利粒子的三维捕获等方面的应用。