Variable transformation of singular cylindrical vector beams using anisotropic crystals

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Abstract

We demonstrated and investigated, both theoretically and experimentally, the transformation of cylindrical vector beams with an embedded phase singularity under the condition of focusing perpendicularly to the axis of the anisotropic calcite crystal. Theoretical and numerical analysis, performed on the basis of decomposing the light field into a set of plane waves for an anisotropic medium, allowed us to study the dependence of the structural transformation of the initial laser beam on the polarisation and phase state in detail. The proposed approach allows one to perform the visual recognition of cylindrically-polarised vector beams of various orders and can be used for the demultiplexing of information channels in the case of polarisation-division multiplexing. The experimentally-obtained results agree with the theoretical findings and demonstrate the reliability of the approach.

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Khonina, S. N., Porfirev, A. P., & Kazanskiy, N. L. (2020). Variable transformation of singular cylindrical vector beams using anisotropic crystals. Scientific Reports, 10(1). https://doi.org/10.1038/s41598-020-62546-2

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