Liu Houquan, Yuan Libo
Opt Express. 2023 Jul 3;31(14):22507-22518. doi: 10.1364/OE.491309.
Since Ciattoni A. et al. found that a particular circularly polarized beam propagating along the optical axis in a uniaxial crystal can generate a vortex with a reversed circular polarization, numerous studies of spin-orbit coupling in this polarization conversion process have been carried out. In this paper, from another perspective rather than the circular polarization conversion, for the first time we find that radial- and azimuthal-polarization components will be separated and finally focus on two separated focus points when circular Airy vortex beams propagate in a uniaxial crystal. Both the separation of the radial- and azimuthal-polarization components in positive and negative uniaxial crystals are investigated, and the physical mechanism of this phenomenon is explained in details. Moreover, the influences of the crystal length and birefringence on the separation of the radial- and azimuthal-polarization components are also discussed. Our results could offer deeper understanding of the propagation of light beam in uniaxial crystal and facilitate the flexible applications of circular Airy vortex beams.
自从恰托尼·A等人发现沿单轴晶体光轴传播的特定圆偏振光束可产生具有反向圆偏振的涡旋以来,人们对该偏振转换过程中的自旋-轨道耦合进行了大量研究。在本文中,我们从不同于圆偏振转换的另一个角度首次发现,当圆形艾里涡旋光束在单轴晶体中传播时,径向偏振分量和方位角偏振分量会分离并最终聚焦于两个分开的焦点。我们研究了正负单轴晶体中径向偏振分量和方位角偏振分量的分离情况,并详细解释了这一现象的物理机制。此外,还讨论了晶体长度和双折射对径向偏振分量和方位角偏振分量分离的影响。我们的结果有助于更深入地理解光束在单轴晶体中的传播,并促进圆形艾里涡旋光束的灵活应用。