Optical orbital-angular-momentum-multiplexed data transmission under high scattering
Передача данных с мультиплексированием по орбитальному угловому моменту оптического излучения в условиях сильного рассеяния
2019-03-06
SCID: 54.1/ncc6zx5j
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OAM channel demultiplexingdigital micromirror deviceoptical crosstalkorbital angular momentum multiplexingscattering-matrix-assisted retrieval
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Abstract (AI)
Multiplexing multiple orbital angular momentum (OAM) channels enables high-capacity optical communication. However, optical scattering from ambient microparticles in the atmosphere or mode coupling in optical fibers significantly decreases the orthogonality between OAM channels for demultiplexing and eventually increases crosstalk in communication. Here, we propose a novel scattering-matrix-assisted retrieval technique (SMART) to demultiplex OAM channels from highly scattered optical fields and achieve an experimental crosstalk of -13.8 dB in the parallel sorting of 24 OAM channels after passing through a scattering medium. The SMART is implemented in a self-built data transmission system that employs a digital micromirror device to encode OAM channels and realize reference-free calibration simultaneously, thereby enabling a high tolerance to misalignment. We successfully demonstrate high-fidelity transmission of both gray and color images under scattering conditions at an error rate of <0.08%. This technique might open the door to high-performance optical communication in turbulent environments.
Key Findings
1
A digital-micromirror-device transmission system enables OAM encoding and reference-free calibration, providing high tolerance to misalignment.
2
A scattering-matrix-assisted retrieval technique (SMART) demultiplexes OAM channels from highly scattered optical fields.
3
High-fidelity gray- and color-image transmission is demonstrated under scattering conditions with an error rate below 0.08%.
4
SMART experimentally achieves −13.8 dB crosstalk when parallel-sorting 24 OAM channels after propagation through a scattering medium.
5
The technique could enable high-performance OAM optical communication in turbulent environments.
Research Object
Optical OAM-multiplexed data transmission through highly scattering media
Research Subject
Recovery and demultiplexing performance of multiple OAM channels under scattering, including crosstalk, transmission fidelity, error rate, and tolerance to misalignment
Publication Details
Publication Date
2019-03-06
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