| Literature DB >> 33850114 |
Mingze Liu1,2, Pengcheng Huo1,2, Wenqi Zhu3,4, Cheng Zhang5, Si Zhang1, Maowen Song1, Song Zhang1, Qianwei Zhou1, Lu Chen3,4, Henri J Lezec3, Amit Agrawal3,4, Yanqing Lu6,7, Ting Xu8,9.
Abstract
The term Poincaré beam, which describes the space-variant polarization of a light beam carrying spin angular momentum (SAM) and orbital angular momentum (OAM), plays an important role in various optical applications. Since the radius of a Poincaré beam conventionally depends on the topological charge number, it is difficult to generate a stable and high-quality Poincaré beam by two optical vortices with different topological charge numbers, as the Poincaré beam formed in this way collapses upon propagation. Here, based on an all-dielectric metasurface platform, we experimentally demonstrate broadband generation of a generalized perfect Poincaré beam (PPB), whose radius is independent of the topological charge number. By utilizing a phase-only modulation approach, a single-layer spin-multiplexed metasurface is shown to achieve all the states of PPBs on the hybrid-order Poincaré Sphere for visible light. Furthermore, as a proof-of-concept demonstration, a metasurface encoding multidimensional SAM and OAM states in the parallel channels of elliptical and circular PPBs is implemented for optical information encryption. We envision that this work will provide a compact and efficient platform for generation of PPBs for visible light, and may promote their applications in optical communications, information encryption, optical data storage and quantum information sciences.Entities:
Year: 2021 PMID: 33850114 DOI: 10.1038/s41467-021-22462-z
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919