Opt Lett. 2018 Jun 1;43(11):2579-2582. doi: 10.1364/OL.43.002579.
In this Letter, we experimentally investigate the propagation dynamics of truncated vector vortex beams generated using a Sagnac interferometer. Upon focusing, the truncated vector vortex beam is found to regain its original intensity structure within the Rayleigh range. In order to explain such behavior, the propagation dynamics of a truncated vector vortex beam is simulated by decomposing it into the sum of integral charge beams with associated complex weights. We also show that the polarization of the truncated composite vector vortex beam is preserved all along the propagation axis. The experimental observations are consistent with theoretical predictions based on previous literature and are in good agreement with our simulation results. The results hold importance as vector vortex modes are eigenmodes of the optical fiber.
在这封信件中,我们通过实验研究了使用萨格纳克干涉仪产生的截断向量涡旋光束的传播动力学。聚焦后,在瑞利范围内,截断向量涡旋光束被发现恢复了其原始强度结构。为了解释这种行为,我们通过将截断的向量涡旋光束分解为具有相关复数权重的积分电荷光束的和来模拟其传播动力学。我们还表明,截断的复合向量涡旋光束的偏振在整个传播轴上得以保持。实验观察结果与基于先前文献的理论预测一致,并且与我们的模拟结果吻合良好。这些结果很重要,因为向量涡旋模式是光纤的本征模式。