Walasik Wiktor, Silahli Salih Z, Litchinitser Natalia M
Department of Electrical Engineering, University at Buffalo, The State University of New York, Buffalo, New York, 14260, USA.
Sci Rep. 2017 Sep 15;7(1):11709. doi: 10.1038/s41598-017-12169-x.
Recently, we have predicted that the modulation instability of optical vortex solitons propagating in nonlinear colloidal suspensions with exponential saturable nonlinearity leads to formation of necklace beams (NBs). Here, we investigate the dynamics of NB formation and propagation, and demonstrate a variety of optical beam structures emerging upon vortex beam propagation in engineered nonlinear colloidal medium. In particular, we show that the distance at which the NB is formed depends on the input power of the vortex beam. Moreover, we show that the NB trajectories are not necessarily tangent to the initial vortex ring, and that their velocities have components stemming both from the beam diffraction and from the beam orbital angular momentum. We also demonstrate the generation of elliptical rotating solitons and analyze the influence of losses on their propagation. Finally, we investigate the conservation of the orbital angular momentum in necklace and elliptical rotating beams. Our studies, performed in ideal lossless media and in realistic colloidal suspensions with losses, provide a detailed description of NB dynamics, and may be useful in analysis of light propagation in highly scattering colloids and biological samples.
最近,我们预测了在具有指数饱和非线性的非线性胶体悬浮液中传播的光学涡旋孤子的调制不稳定性会导致项链光束(NBs)的形成。在此,我们研究了NB形成和传播的动力学,并展示了在工程化非线性胶体介质中涡旋光束传播时出现的各种光束结构。特别地,我们表明形成NB的距离取决于涡旋光束的输入功率。此外,我们表明NB的轨迹不一定与初始涡旋环相切,并且它们的速度具有源于光束衍射和光束轨道角动量的分量。我们还展示了椭圆旋转孤子的产生,并分析了损耗对其传播的影响。最后,我们研究了项链光束和椭圆旋转光束中轨道角动量的守恒。我们在理想无损介质和具有损耗的实际胶体悬浮液中进行的研究,详细描述了NB的动力学,可能有助于分析光在高散射胶体和生物样品中的传播。