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Quantum-inspired Fredkin gate based on spatial modes of light.

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    This study demonstrates a quantum-inspired protocol using orbital angular momentum (OAM) optical beams to compare data without revealing its content. This approach offers a novel classical technology inspired by quantum principles for efficient information processing.

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    Area of Science:

    • Quantum-inspired technologies
    • Classical optics
    • Information science

    Background:

    • Quantum physics principles can inspire novel classical technologies.
    • Quantum-inspired technologies mimic quantum algorithms for easier implementation.
    • Orbital angular momentum (OAM) beams are suitable information carriers.

    Purpose of the Study:

    • To demonstrate a proof-of-concept quantum-inspired protocol.
    • To utilize OAM beams for data comparison.
    • To achieve similarity measurement without data disclosure.

    Main Methods:

    • Implementation of a quantum-inspired protocol based on quantum fingerprinting.
    • Utilizing optical beams with orbital angular momentum (OAM) as information carriers.
    • Employing a Fredkin gate or polarization-controlled SWAP operation for data exchange.

    Main Results:

    • Successful demonstration of a quantum-inspired protocol in a proof-of-concept experiment.
    • Measurement of waveform and bit-string similarity.
    • Data content remained undisclosed during the similarity measurement.

    Conclusions:

    • Quantum-inspired protocols offer a viable pathway to novel classical technologies.
    • OAM beams facilitate efficient data manipulation and comparison.
    • The demonstrated protocol successfully measures data similarity without compromising information privacy.