Aadhi A, Vaity Pravin, Chithrabhanu P, Reddy Salla Gangi, Prabakar Shashi, Singh R P
Appl Opt. 2016 Feb 10;55(5):1107-11. doi: 10.1364/AO.55.001107.
Vector vortex beams are classified into four types depending upon spatial variation in their polarization vector. We have generated all four of these types of vector vortex beams by using a modified polarization Sagnac interferometer with a vortex lens. Further, we have studied the non-coaxial superposition of two vector vortex beams. It is observed that the superposition of two vector vortex beams with same polarization singularity leads to a beam with another kind of polarization singularity in their interaction region. The results may be of importance in ultrahigh security of the polarization-encrypted data that utilizes vector vortex beams and multiple optical trapping with non-coaxial superposition of vector vortex beams. We verified our experimental results with theory.
矢量涡旋光束根据其偏振矢量的空间变化可分为四种类型。我们通过使用带有涡旋透镜的改进型偏振萨尼亚克干涉仪产生了所有这四种类型的矢量涡旋光束。此外,我们研究了两个矢量涡旋光束的非同轴叠加。据观察,具有相同偏振奇点的两个矢量涡旋光束的叠加会在它们的相互作用区域产生具有另一种偏振奇点的光束。这些结果对于利用矢量涡旋光束和矢量涡旋光束非同轴叠加的多重光学捕获的偏振加密数据的超高安全性可能具有重要意义。我们用理论验证了我们的实验结果。