Liang Chunhao, Mi Chenkun, Wang Fei, Zhao Chengliang, Cai Yangjian, Ponomarenko Sergey A
Opt Express. 2017 May 1;25(9):9872-9885. doi: 10.1364/OE.25.009872.
We introduce partially coherent vector sources with periodic spatial coherence properties, which we term vector optical coherence lattices (VOCLs), as an extension of recently introduced scalar OCLs. We derive the realizability conditions and propagation formulae for radially polarized VOCLs (i.e., a typical kind of VOCLs). We show that radially polarized VOCLs display nontrivial propagation properties and generate controllable intensity lattices in the far zone of the source (or in the focal plane of a lens). By adjusting source coherence, one can obtain intensity lattices with bright or dark nodes. The latter can be employed to simultaneously trap multiple particles or atoms as well as in free-space optical communications. We also report the experimental generation of radially polarized VOCLs and we characterize VOCLs propagation properties.
我们引入具有周期性空间相干特性的部分相干矢量源,我们将其称为矢量光学相干晶格(VOCLs),作为最近引入的标量光学相干晶格(OCLs)的扩展。我们推导了径向偏振VOCLs(即一种典型的VOCLs)的可实现条件和传播公式。我们表明,径向偏振VOCLs具有非平凡的传播特性,并在源的远区(或透镜的焦平面)产生可控的强度晶格。通过调整源的相干性,可以获得具有亮节点或暗节点的强度晶格。后者可用于同时捕获多个粒子或原子以及用于自由空间光通信。我们还报告了径向偏振VOCLs的实验产生,并对VOCLs的传播特性进行了表征。