Structured caustic vector vortex optical field: Manipulating optical angular momentum flux and polarization rotation

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Abstract

A caustic vector vortex optical field is experimentally generated and demonstrated by a caustic-based approach. The desired caustic with arbitrary acceleration trajectories, as well as the structured states of polarization (SoP) and vortex orders located in different positions in the field cross-section, is generated by imposing the corresponding spatial phase function in a vector vortex optical field. Our study reveals that different spin and orbital angular momentum flux distributions (including opposite directions) in different positions in the cross-section of a caustic vector vortex optical field can be dynamically managed during propagation by intentionally choosing the initial polarization and vortex topological charges, as a result of the modulation of the caustic phase. We find that the SoP in the field cross-section rotates during propagation due to the existence of the vortex. The unique structured feature of the caustic vector vortex optical field opens the possibility of multi-manipulation of optical angular momentum fluxes and SoP, leading to more complex manipulation of the optical field scenarios. Thus this approach further expands the functionality of an optical system.

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Chen, R. P., Chen, Z., Chew, K. H., Li, P. G., Yu, Z., Ding, J., & He, S. (2015). Structured caustic vector vortex optical field: Manipulating optical angular momentum flux and polarization rotation. Scientific Reports, 5. https://doi.org/10.1038/srep10628

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