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      Scintillation of the orbital angular momentum of a Bessel Gaussian beam and its application on multi-parameter multiplexing

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      Optics Express
      Optica Publishing Group

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          Abstract

          The scintillation of the orbital angular momentum (OAM) of a Bessel Gaussian beam was derived based on the Rytov method to characterize the performance of the OAM communication. Moreover, a multi-parameter demultiplexing method was also proposed which could decode the OAM state, the amplitude and two additional beam width information dimensions. The advantages of the OAM states as the communication carrier over the beam intensity were that the minimum scintillation of the fundamental mode was smaller, and its corresponding radius also diverged slower. The coefficient of variation of the decoding amplitude was approximated to the square root of the radial minimum scintillation, and it provided an estimated decoding precision for the input sample selection. This study not only provided theoretical basis for communication link design, but also had a promising application on the large capacity beam multiplexing in free-space laser communication.

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          Most cited references32

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          Terabit free-space data transmission employing orbital angular momentum multiplexing

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            Optical communications using orbital angular momentum beams

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              Advances in optical angular momentum

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                Author and article information

                Contributors
                Journal
                OPEXFF
                Optics Express
                Opt. Express
                Optica Publishing Group
                1094-4087
                2023
                2023
                January 24 2023
                January 30 2023
                : 31
                : 3
                : 4507
                Article
                10.1364/OE.478127
                7aad76ef-337f-4d89-aca0-475a0195854e
                © 2023

                https://doi.org/10.1364/OA_License_v2#VOR-OA

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