Chiral-resonance-induced asymmetric spin-orbit mapping effect in twisted few-mode hollow-core anti-resonant fiber
Xiaolin Chen, ZHIBO OU, YANKUNZHE WANG, Zhou Yong, Xiaohui Ma, WENTAN FANG, Wei Zhang, Zhang Lei 等 9 位
Hefei University of Technology Yangtze Optical Electronic (China)
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摘要与影响
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 TM 01 /TE 01 modes and retained degeneracy of HE 21 modes, the left- and right-handed circularly polarized LP 11 -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 LP 11 -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.
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物理Quantum optics and atomic interactions
Orbital Angular Momentum in Optics · Photonic Crystal and Fiber Optics
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