Fang Chaoqun, Wu Chao, Gong Zhijie, Zhao Song, Sun Anqi, Wei Zeyong, Li Hongqiang
Opt Lett. 2018 Apr 1;43(7):1538-1541. doi: 10.1364/OL.43.001538.
The vortex beam which carries the orbital angular momentum has versatile applications, such as high-resolution imaging, optical communications, and particle manipulation. Generating vortex beams with the Pancharatnam-Berry (PB) phase has drawn considerable attention for its unique spin-to-orbital conversion features. Despite the PB phase being frequency independent, an optical element with broadband high-efficiency circular polarization conversion feature is still needed for the broadband high-efficiency vortex beam generation. In this work, a broadband and high-efficiency vortex beam generator based on the PB phase is built with a hybrid helix array. Such devices can generate vortex beams with arbitrary topological charge. Moreover, vortex beams with opposite topological charge can be generated with an opposite handedness incident beam that propagates backward. The measured efficiency of our device is above 65% for a wide frequency range, with the relative bandwidth of 46.5%.
携带轨道角动量的涡旋光束具有广泛的应用,如高分辨率成像、光通信和粒子操控。利用潘查拉特纳姆-贝里(PB)相位产生涡旋光束因其独特的自旋-轨道转换特性而备受关注。尽管PB相位与频率无关,但为了宽带高效地产生涡旋光束,仍需要一种具有宽带高效圆偏振转换特性的光学元件。在这项工作中,基于PB相位构建了一种采用混合螺旋阵列的宽带高效涡旋光束发生器。这种装置可以产生具有任意拓扑电荷的涡旋光束。此外,通过反向传播的相反旋向入射光束可以产生具有相反拓扑电荷的涡旋光束。我们装置在宽频率范围内的测量效率高于65%,相对带宽为46.5%。