Xiaolin Chen, Zhibo Ou, Yankunzhe Wang, Yong Zhou, Xiaohui Ma, Wentan Fang, Wei Zhang, Lei Zhang, Weiqing Gao
We investigate the interaction between the spin and orbital angular momentum (OAM) of light in a few-mode hollow-core anti-resonant fiber (HC-ARF). Due to the lifted degeneracy of TM01/TE01 modes and retained degeneracy of HE21 modes, the left- and right-handed circularly polarized LP11-like beams can be transformed into linearly polarized OAM modes carrying topological charges of +1 and -1, respectively, in an untwisted HC-ARF. However, since one of the vector OAM eigenmodes supported by the twisted HC-ARF couples strongly with the cladding leaky mode, only the right-handed circularly polarized LP11-like beam yields a linearly polarized OAM mode with a topological charge of -1. By employing our developed code for the full-vector finite-element beam propagation method, we have demonstrated the OAM-resonance-induced asymmetric spin-orbit mapping effect in twisted HC-ARFs. Our work opens a path for designing HC-ARF-based integrated devices for important applications, such as optical vortex generation.