Fang Zhao-Xiang, Chen Yue, Ren Yu-Xuan, Gong Lei, Lu Rong-De, Zhang An-Qi, Zhao Hong-Ze, Wang Pei
Opt Express. 2018 Mar 19;26(6):7324-7335. doi: 10.1364/OE.26.007324.
Photons in an optical vortex usually carry orbital angular momentum, which boosts the application of the micro-rotation of absorbing particles and quantum information encoding. Such photons propagate along a straight line in free space or follow a curved trace once guided by an optical fiber. Teleportation of an optical vortex using a beam with non-diffraction and self-healing is quite challenging. We demonstrate the manipulation of the propagation trace of an optical vortex with a symmetric Airy beam (SAB) and found that the SAB experiences self-rotation with the implementation of a topological phase structure of coaxial vortex. Slight misalignment of the vortex and the SAB enables the guiding of the vortex into one of the self-accelerating channels. Multiple off-axis vortices embedded in SAB are also demonstrated to follow the trajectory of the major lobe for the SAB beam. The Poynting vector for the beams proves the direction of the energy flow corresponding to the intensity distribution. Hence, we anticipate that the proposed vortex symmetric Airy beam (VSAB) will provide new possibilities for optical manipulation and optical communication.
光学涡旋中的光子通常携带轨道角动量,这推动了吸收粒子微旋转和量子信息编码的应用。此类光子在自由空间中沿直线传播,而一旦由光纤引导则会沿曲线轨迹传播。利用具有无衍射和自愈特性的光束来实现光学涡旋的隐形传态极具挑战性。我们展示了用对称艾里光束(SAB)对光学涡旋传播轨迹的操控,并发现SAB在同轴涡旋拓扑相位结构的实现过程中会发生自旋转。涡旋与SAB的轻微错位能使涡旋被引导至其中一个自加速通道。还证明了嵌入SAB中的多个离轴涡旋会跟随SAB光束主瓣的轨迹。光束的坡印廷矢量证明了与强度分布相对应的能量流动方向。因此,我们预计所提出的涡旋对称艾里光束(VSAB)将为光学操控和光通信提供新的可能性。