Mao Haidan, Chen Yahong, Liang Chunhao, Chen Linfei, Cai Yangjian, Ponomarenko Sergey A
Opt Express. 2019 May 13;27(10):14353-14368. doi: 10.1364/OE.27.014353.
We introduce a class of self-steering partially coherent vector optical beams with the aid of a generalized complex Gaussian representation. We show that such partially coherent vector beams have mobile guiding centers of their intensity and polarization state distributions on the beam free space propagation that could be employed to generate far-field polarization arrays. Further, we introduce theoretically and realize experimentally a class of vector beams with inhomogeneous statistical and nontrivial far-field angular distributions, which we term cylindrically correlated partially coherent (CCPC) vector beams. We find that such novel beams possess, in general, cylindrically polarized, far-field patterns of an adjustable degree of polarization. The steering control of the intensity and polarization of the self-steering CCPC vector beam is also demonstrated in experiment. Our findings can find important applications, such as trapping of neutral microparticles and excitation of novel surface waves.
我们借助广义复高斯表示引入了一类自导向部分相干矢量光束。我们表明,此类部分相干矢量光束在光束自由空间传播中具有强度和偏振态分布的移动引导中心,可用于生成远场偏振阵列。此外,我们在理论上引入并通过实验实现了一类具有非均匀统计和非平凡远场角分布的矢量光束,我们将其称为柱面相关部分相干(CCPC)矢量光束。我们发现,此类新型光束通常具有可调节偏振度的柱面偏振远场图案。实验中还展示了自导向CCPC矢量光束强度和偏振的转向控制。我们的发现可找到重要应用,如捕获中性微粒子和激发新型表面波。